
Carboxylic Acids
Carboxylic acids are organic molecules characterized by having a carboxyl-type functional group (-COOH). These acids are fundamental in various chemical reactions, including esterification, amidation, and decarboxylation. Carboxylic acids are widely used in the production of pharmaceuticals, polymers, and agrochemicals. In this section, you can find a large number of carboxylic acids ready to be used. At CymitQuimica, we provide a broad range of high-quality carboxylic acids to support your research and industrial applications.
Found 12453 products of "Carboxylic Acids"
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Ethyl 2-Chloracetoacetate
CAS:<p>Applications Ethyl 2-Chloracetoacetate is used in the preparation of oxazoles and thiazoles as agonists for peroxisome proliferator-activated receptor δ. It is also used to synthesize dimethylimidazothiadiazolecarbohydrazides with anticancer activities.<br> Not a dangerous good if item is equal to or less than 1g/ml and there is less than 100g/ml in the package<br>References Sznaidman, M., et al.: Bioorg. Med. chem. Lett., 13, 1517 (2003); Terzioglu, N., et al.: Eur. J. Med. Chem., 38, 781 (2003)<br></p>Formula:C6H9ClO3Color and Shape:NeatMolecular weight:164.59Perfluorohexanoic Acid (>90%)
CAS:<p>Applications Perfluorohexanoic Acid is a perfluorinated compound (FPC) that can cause acute toxicity to humans and the environment. Perfluorohexanoic Acid is also used as a reagent in the synthesis of 3,3,4,4,5,5,6,6,7,7,7-Undecafluoro-2-heptanol (U787500).<br> Not a dangerous good if item is equal to or less than 1g/ml and there is less than 100g/ml in the package<br>References Latala, A., et al.: Environ. Toxicol. Phar., 28, 167 (2009); Mulkiewicz, E., et al.: Environ. Toxicol. Phar., 23, 279 (2007)<br></p>Formula:C6HF11O2Purity:>90%Color and Shape:ColourlessMolecular weight:314.05Methyl Acetate
CAS:Controlled Product<p>Stability Volatile<br>Applications Methyl Acetate is used as an organic chemical solvent for a multitude of organic processes. Also used in the production of biodiesel.<br> Not a dangerous good if item is equal to or less than 1g/ml and there is less than 100g/ml in the package<br>References Xu, Y. et al.: J. mol. Cat., 32, 241 (2005); Ogino, H. et al.: J. Biosci. Bioeng., 89, 451 (2000);<br></p>Formula:C3H6O2Color and Shape:NeatMolecular weight:74.08Phosphoric Acid
CAS:<p>Applications Phosphoric Acid is used in various chemical processes as a phosphorylating compound. It is involved in the hydrolysis via phosphorylation of nanocrystals to obtain high-aspect-ratio cellulose nanocrystals. Also used in the synthesis of lithium-ion cells.<br> Not a dangerous good if item is equal to or less than 1g/ml and there is less than 100g/ml in the package<br>References Camarero E. et al.: Biomacromol., 14, 1223 (2013); Meligrana, G. et al.: J. Power. Sources., 160, 516 (2006);<br></p>Formula:H3O4PColor and Shape:NeatMolecular weight:98.00β-Chlorolactic Acid
CAS:<p>Applications β-Chlorolactic Acid (cas# 1713-85-5) is a compound useful in organic synthesis.<br></p>Formula:C3H5ClO3Color and Shape:NeatMolecular weight:124.5233,5-Di-tert-butyl-4-hydroxybenzoic acid hexadecyl ester
CAS:Controlled Product<p>Applications 3,5-Di-tert-butyl-4-hydroxybenzoic acid hexadecyl ester<br></p>Formula:C31H54O3Color and Shape:White PowderMolecular weight:474.765-(3,4-dihydroxyphenyl)pentanoic Acid
CAS:Controlled Product<p>Applications 5-(3,4-dihydroxyphenyl)pentanoic Acid (cas# 31129-94-9) is a useful research chemical.<br></p>Formula:C11H14O4Color and Shape:NeatMolecular weight:210.23Decanoic Acid
CAS:Controlled Product<p>Applications Decanoic acid is used in manufacturing of esters for artificial fruit flavors and perfumes.<br>References Oro, L., et al.: Acta Pharmacol. Toxicol., 18, 141 (1961),<br></p>Formula:C10H20O2Color and Shape:White To YellowMolecular weight:172.26Succinic Acid
CAS:<p>Applications Succinic Acid was identified in essential oil from Saxifraga stolonifera and has antibacterial activity.<br>References Zhang, Z.: Xibei Nongye Xuebao, 25, 1536 (2016)<br></p>Formula:C4H6O4Color and Shape:NeatMolecular weight:118.09o-Carborane-1-carboxylic Acid
CAS:Controlled ProductFormula:C3H12B10O2Color and Shape:NeatMolecular weight:188.243-Oxohexanedioic Acid
CAS:<p>Applications 3-Oxohexanedioic Acid is a degradation product of catechol in the presence of hydrogen peroxide; Also, it is derived from 3-Oxohexanedioic Acid Diethyl Ester (O856830), which is an intermediate used to prepare CMPF (C595000) which is a drug-binding inhibitor which is also a constituent of urine. CMPF can inhibit specific T4 binding in serum by increasing the free concentration of direct competitors.<br>References Gogoi, A., et al.: Chem. Eng. J., 311, 153-162 (2017); Mabuchi, H., Nakahashi, H.: Nephron, 44, 277 (1986); Lim, C.F., et. al.: Metabolism Clin. Exp., 42, 1468 (1993)<br></p>Formula:C6H8O5Color and Shape:Off White SolidMolecular weight:160.1251,2,3,4-Cyclobutanetetracarboxylic Acid 1,2,3,4-Tetramethyl Ester
CAS:Controlled Product<p>Applications 1,2,3,4-Cyclobutanetetracarboxylic Acid 1,2,3,4-Tetramethyl Ester is product from the formation of a mixture of maleic anhydride and hexamethylbenzene when exposed to ultraviolet irradiation.<br>References Raciszewski, Z.: J. Chem. Soc., 12, 1147-1155 (1966);<br></p>Formula:C12H16O8Color and Shape:White To Off-WhiteMolecular weight:288.25Ethyl 2-Mercaptoacetate
CAS:Controlled Product<p>Applications Ethyl 2-Mercaptoacetate is an off-odor compound in white wine and an eye irritant.<br> Not a dangerous good if item is equal to or less than 1g/ml and there is less than 100g/ml in the package<br>References Nikolantonaki, M., Darriet, P.: J. Agr. Food Chem., 59, 10191 (2011); Bagley, D.M., et. al.: Toxicol. in vitro, 13, 505 (1999)<br></p>Formula:C4H8O2SColor and Shape:NeatMolecular weight:120.17Mesitoic acid
CAS:Controlled Product<p>Applications Mesitoic acid can be used for its antioxidant.<br>References Thomas, P.S., et.al.: Medicines, 4, 1-7, (2017);<br></p>Formula:C10H12O2Color and Shape:Off-WhiteMolecular weight:164.2Fumaric Acid
CAS:Controlled Product<p>Applications Fumaric Acid is a compound that occurs in many plants. It is essential to vegetable and tissue respiration and also used as an antioxidant. Fumaric Acid is also a metabolite of Dimethyl Fumarate (D464965), a compound used as a treatment for the relapsing forms of multiple sclerosis and psoriasis.<br>References Jelitto, T., et al.: Planta, 188, 238 (1992); Schimrigk, S., et al.: Eur. J. Neurol., 13, 604 (2006); Son, H., et al.: J. Agric. Food Chem., 56, 8007 (2008);<br></p>Formula:C4H4O4Color and Shape:NeatMolecular weight:116.07Methyl (S)-N-Tritylaziridine-2-carboxylate
CAS:Controlled Product<p>Applications Methyl (S)-N-Tritylaziridine-2-carboxylate (cas# 75154-68-6) is a compound useful in organic synthesis.<br></p>Formula:C23H21NO2Color and Shape:NeatMolecular weight:343.424-Hydrazinobenzoic Acid Hydrochloride
CAS:Controlled Product<p>Applications 4-Hydrazinobenzoic acid hydrochloride (cas# 24589-77-3) is a useful research chemical.<br></p>Formula:C7H8N2O2·HClColor and Shape:NeatMolecular weight:188.612Phenylglyoxylic Acid
CAS:<p>Applications Phenylglyoxylic Acid (cas# 611-73-4) is a compound useful in organic synthesis.<br></p>Formula:C8H6O3Color and Shape:NeatMolecular weight:150.1314-Nitrobenzoic Acid
CAS:Controlled Product<p>Stability Hygroscopic<br>Applications 4-Nitrobenzoic Acid is used in the synthesis of anti-Trypanosoma cruzi agents in the treatment of chagas disease.<br>References Palace-Berl, F. et al.: Bioorg, Med. Chem. Lett., 21, 5395 (2013); Zhou, L. et al.: J. Med. Chem., 56, 796 (2013);<br></p>Formula:C7H5NO4Color and Shape:NeatMolecular weight:167.12Citric Acid Monohydrate
CAS:Controlled Product<p>Applications Citric Acid Monohydrate is a useful buffer component for antigen and epitope unmasking.<br></p>Formula:C6H8O7·H2OColor and Shape:White To Off-WhiteMolecular weight:210.144-Undecylbenzenesulfonic Acid Sodium Salt
CAS:Controlled Product<p>Applications N-Undecylbenzenesulfonic Acid is an anionic surfactant.<br>References Mottaleb, M. A.: Anal. Sci., 15, 1137 (1999), Kolb, M., et al.: LaborPraxis, 22, 56 (1998); Ferrer D., et al.: Tenside, Surfact., Det., 34, 278 (1997)<br></p>Formula:C17H27NaO3SColor and Shape:NeatMolecular weight:334.45Parabanic Acid
CAS:Controlled Product<p>Applications Parabanic acid appears to be an important marker of free radical reactions in vivo and may be used to monitor free radical activity and to evaluate pharmacological therapy with radical scavengers.<br>References Koumoto, Y., et al.: J. Biol. Chem., 276, 29688 (2001), Gibon, Y., et al.: Plant Cell, 16, 3304 (2004), Kaplan, F., et al.: Plant J., 44, 730 (2005), Ishii, N., et al.: Science, 316, 593 (2007),<br></p>Formula:C3H2N2O3Color and Shape:NeatMolecular weight:114.06Phosphoric Acid Tributyl Ester
CAS:Controlled Product<p>Stability Moisture Sensitive<br>Applications Phosphoric Acid Tributyl Ester is used as a solvent in the solvent-detergent method for production of immunoglobulin for inactivation of viruses with lipid envelope on the model of duck hepatitis B virus. It is also used as a ligand in the extraction of lanthanide ions from solid and liquid materials by supercritical CO2.This compound is a contaminant of emerging concern (CECs).<br>References Zubkova, N., et al.: Bull. Exp. Biol. Med., 155, 821 (2013); Lin, Y., et al.: Anal. Chem., 66, 1971(1994)<br></p>Formula:C12H27O4PColor and Shape:ColourlessMolecular weight:266.31Butyl Carbamate
CAS:Controlled Product<p>Applications butyl carbamate (cas# 592-35-8) is a useful research chemical.<br></p>Formula:C5H11NO2Color and Shape:NeatMolecular weight:117.15Benzyl Acetate
CAS:Controlled Product<p>Applications Benzyl Acetate, is found naturally in many flowers, It has pleasant sweet aroma reminiscent of jasmine, and thus is used widely in perfumery industry, and also as a flavouring agent. It is also used as a solvent.<br>References Schiestl, F. P., et al.: J. Chem. Ecology, 29 (2004); Qian-qian, M., et al.: Jingxi Huagong, 30, 442 (2013);<br></p>Formula:C9H10O2Color and Shape:NeatMolecular weight:150.17β-Formylpropionic Acid
CAS:Controlled Product<p>Applications β-Formylpropionic Acid is used in the synthesis of potent and orally available nonpeptide antagonist of human gonadotropin-releasing hormone receptor. It is also a reagent in the synthesis of human melanocortin-4 receptor antagonists with a pyrrolidinone moiety.<br>References Chen, C. et al.: J. Med. Chem., 51, 7478 (2008); Jiang, W. et al.: Bioorg. Med. Med. Chem. Lett., 17, 5610 (2007);<br></p>Formula:C4H6O3Color and Shape:NeatMolecular weight:102.091-Acetylisonipecotic Acid
CAS:Controlled Product<p>Applications Metabolite fingerprinting in transgenic Nicotiana tabacum altered by the Escherichia coli glutamate dehydrogenase gene. A synthetic intermediate in the preparation of CNS depressants.<br>References Mungur, R., et al.: J. Biomed. Biotechnol., 2, 198 (2005), Young, J., et al.: Bioorg. Med. Chem. Lett., 17, 5310 (2007),<br></p>Formula:C8H13NO3Color and Shape:NeatMolecular weight:171.19Octyl 3-Octyloxiraneoctanoic Acid
CAS:Controlled Product<p>Applications Octyl 3-Octyloxiraneoctanoic Acid (cas# 106-84-3) is a compound useful in organic synthesis.<br></p>Formula:C26H50O3Color and Shape:NeatMolecular weight:410.67Triethyl Phosphonoacetate
CAS:Controlled Product<p>Applications Reagent used for Horner-Emmons modification.<br> Not a dangerous good if item is equal to or less than 1g/ml and there is less than 100g/ml in the package<br>References Hediger, M., et al.: Bioorg. Med. Chem., 12, 4995 (2004), Kim, J., et al.: Nat., 452, 239 (2008),<br></p>Formula:C8H17O5PColor and Shape:ColourlessMolecular weight:224.19Methyl-3-hydroxyisothiazole-5-carboxylate
CAS:Controlled Product<p>Applications Methyl-3-hydroxyisothiazole-5-carboxylate (cas# 100241-89-2) is a compound useful in organic synthesis.<br></p>Formula:C5H5NO3SColor and Shape:Off White To YellowMolecular weight:159.16Nicametate
CAS:Controlled Product<p>Applications Nicotinic Acid 2-Diethylamino-Ethyl Ester (cas# 3099-52-3) is a useful research chemical.<br></p>Formula:C12H18N2O2Color and Shape:NeatMolecular weight:222.285-Chloronicotinic Acid
CAS:Controlled Product<p>Applications 5-Chloronicotinic Acid is used as reagent/reactant luminescence and hydrothermal preparation of cobalt/cadmium/lead chloronicotinate phenanthroline MOF.<br>References Gao, Z.Q., et al.: J. Solid State Chem., 241, 121-130 (2016)<br></p>Formula:C6H4ClNO2Color and Shape:NeatMolecular weight:157.5547H-Dodecafluoroheptanoic Acid
CAS:<p>Applications 7H-Dodecafluoroheptanoic Acid is a derivative of Heptanoic Acid (H998455) which can be used as an organic building blocks for the synthesis of variety of chemical compounds. Heptanoic Acid is used in the synthesis of 17-epi-Testosterone Enanthate (T155095). It is used in the preparation of esters, such as ethyl heptanoate, which are used in fragrances and as artificial flavors. It is also one of many additives in cigarettes.<br> Not a dangerous good if item is equal to or less than 1g/ml and there is less than 100g/ml in the package<br>References Anneken, D. et al.: Fatty Acids, Ullmann's Encyclopedia of Industrial Chemistry (2006); Wudy, S., et al.: Steroids, 66, 759 (2001); Kootstra, P., et al.: Anal. Chim. Acta., 586, 82 (2007); Sten, T., et al.: Drug Metab. Dispos., 37, 417 (2009)<br></p>Formula:C7H2F12O2Color and Shape:WhiteMolecular weight:346.07methyl 5-(hydroxymethyl)furan-2-carboxylate
CAS:Controlled Product<p>Applications methyl 5-(hydroxymethyl)furan-2-carboxylate (cas# 36802-01-4) is a useful research chemical.<br></p>Formula:C7H8O4Color and Shape:NeatMolecular weight:156.141,11-Undecanedicarboxylic Acid
CAS:<p>Applications 1,11-Undecanedicarboxylic Acid is used in the synthesis of two Bis(tetrahydroisoquinoline) which were highly cytotoxic for cancer-cell cultures and less toxic to healthy cells and exhibited noticeable antimicrobial activity against Gram-positive and Gram-negative bacteria and fungal strain Candida albicans.<br>References Terent’eva, E. O., et al.: Chem. Nat. Compd., 53, 328-332 (2017)<br></p>Formula:C13H24O4Color and Shape:NeatMolecular weight:244.332-(4-Hydroxybenzoyl)benzoic acid
CAS:<p>Applications 2-(4-Hydroxybenzoyl)benzoic acid<br></p>Formula:C14H10O4Color and Shape:Off-WhiteMolecular weight:242.227Pentafluorobenzoic Acid
CAS:Controlled Product<p>Applications Pentafluorobenzoic acid (cas# 602-94-8) is a useful research chemical.<br></p>Formula:C7HF5O2Color and Shape:NeatMolecular weight:212.07Bromochloroacetic Acid
CAS:<p>Applications Bromochloroacetic acid is a halogenated disinfection byproduct commonly found in drinking water, fruit juice, and cheese. Bromochloroacetic acid has been shown to cause mesothelioma, fibroadenomas, and adenomas in rats<br> Not a dangerous good if item is equal to or less than 1g/ml and there is less than 100g/ml in the package<br>References Hang, C., et al.: Sci Total Environ. 543, 425 (2016); Cardador, M. J. and Gallego, M.: Food Chem. 173, 685 (2015); Natl Toxicol Program Tech Rep Ser. 549, 1 (2009)<br></p>Formula:C2H2BrClO2Color and Shape:NeatMolecular weight:173.39Tiglic Acid
CAS:<p>Applications Tiglic acid is the stable isomer of angelic acid. Tiglic acid was found as glyceride in croton oil, as butyl ester in the oil of the Roman camomile, and as geranyl tiglate in oil of geranium. Tiglic acid is formed during the charcoaling of maple wood.<br> Not a dangerous good if item is equal to or less than 1g/ml and there is less than 100g/ml in the package<br>References Bueding, et al.: J. Biol. Chem., 202, 505 (1953),<br></p>Formula:C5H8O2Color and Shape:NeatMolecular weight:100.12Fendizoic Acid
CAS:Controlled Product<p>Applications Fendizoic Acid is a reagent in the synthesis of fluorinated polyphthalazinone ethers containing perfluorophenylene moieties.<br>References Lu, Z., et al.: J. Polym. Sci. A1, 42, 925 (2004)<br></p>Formula:C20H14O4Color and Shape:NeatMolecular weight:318.324-Azidobenzoic Acid
CAS:Controlled Product<p>Applications A benzoic acid derivative used in photolysis reactions and biomaterial studies.<br> Not a dangerous good if item is equal to or less than 1g/ml and there is less than 100g/ml in the package<br>References Wetzels, G.M. et al.: Biomaterials., 20, 1879 (1999); Mao, C. et al.: Adv. Coll. Int. Sci., 110, 5 (2004);<br></p>Formula:C7H5N3O2Color and Shape:NeatMolecular weight:163.132,2-Dimethylcyclopropylcarboxylic acid
CAS:Controlled Product<p>Stability Stench<br>Applications 2,2-Dimethylcyclopropylcarboxylic acid<br></p>Formula:C6H10O2Color and Shape:NeatMolecular weight:114.1417-Hydroxy-3,11-dioxo-androsta-1,4-diene-17β-carboxylic Acid
Controlled Product<p>Applications 17-Hydroxy-3,11-dioxo-androsta-1,4-diene-17β-carboxylic Acid is an intermediate used to prepare (11β,17α)-17-[(Ethoxycarbonyl)oxy]-11-hydroxy-3-oxo-androsta-1,4-diene-17-carboxylic acid (E890570) which is a derivative of Loteprednol Etabonate (L471400), an ophthalmic corticosteroid.<br>References Alberth, M., et al.: J. Biopharm.Sci., 2, 115 (1991), Bodor, N., et al.: Pharm. Res., 9, 1275 (1992), Bartlett, J.D., et al.: J. Ocul. Pharmacol., 9, 157 (1993)<br></p>Formula:C20H24O5Color and Shape:NeatMolecular weight:344.40Permethrinic Acid (cis/trans mixture)
CAS:<p>Applications 3-(2,2-Dichloroethenyl)-2,2-dimethylcyclopropanecarboxylic Acid is a reagent used in the preparation of hapten and immunogen for the production of polyclonal antibodies, specific to Cypermethrin (C989000).<br>References Lee, N. et al.: J. Agri. Food Chem., 46, 520 (1998); Hongsibsong, S. et al.: Int. J. Agri. Biol., 14, 246 (2012);<br></p>Formula:C8H10Cl2O2Color and Shape:White To Light YellowMolecular weight:209.07Ethyl Cyano(hydroxyimino)acetate
CAS:Controlled Product<p>Applications Ethyl Cyano(hydroxyimino)acetate is used in peptide synthesis and has shown to suppress racemiztion, has high coupling efficiency in both solution and solid phase synthesis and is a non-explosive alternative to 1-hydroxybenzotriazole (HOBt) and 1-hydroxy-7-azabenzotriazole (HOAt).<br>References Khattab, S.N.: Bull. Chem. Soc. Jpn., 83, 1374 (2010)<br></p>Formula:C5H6N2O3Color and Shape:NeatMolecular weight:142.115-(3-hydroxyphenyl)pentanoic Acid
CAS:<p>Applications 5-(3-hydroxyphenyl)pentanoic acid (cas# 31129-95-0) is a useful research chemical.<br></p>Formula:C11H14O3Color and Shape:NeatMolecular weight:194.234,6-Dichloro-1H-indole-2-carboxylic acid ethyl ester
CAS:<p>4,6-Dichloro-1H-indole-2-carboxylic acid ethyl ester is a synthetic compound that functions as an agonist of the indole 2 receptor. It has been shown to have affinity for cortical and brain membranes, with a greater affinity for acidic regions of the membrane. 4,6-Dichloro-1H-indole-2-carboxylic acid ethyl ester is also capable of binding to the indole 2 receptor and activating it. The carboxyl group in this compound is substituted with benzene rings, which are connected by a moiety containing two carboxylic groups. 4,6-Dichloro-1H-indole-2-carboxylic acid ethyl ester was synthesised from 1H -indole acetic acid and chloroethane in four steps.</p>Formula:C11H9Cl2NO2Purity:Min. 95%Color and Shape:SolidMolecular weight:258.1 g/molcis-4,7,10,13,16,19-Docosahexaenoic acid ethyl ester - 90%
CAS:<p>Cis-4,7,10,13,16,19-Docosahexaenoic acid ethyl ester (DHAEE) is a polyunsaturated fatty acid that belongs to the omega-3 family. It is used as an alternative feedstock for biodiesel production and has been shown to be a good candidate for hydrogenation reactions. The adsorption equilibrium of DHAEE has been studied using isotherms at different densities and pressures. At high pressures, the adsorption of DHAEE on silica gel was found to be reversible. This means that adsorbed DHAEE can be desorbed by heating the solid phase. This property could be useful in the recovery of this compound from spent catalysts or in other applications where it needs to be recovered from a solid phase.</p>Formula:C24H36O2Purity:Min. 95%Color and Shape:PowderMolecular weight:356.54 g/mol7-Azido-heptanoic acid
CAS:<p>7-Azido-heptanoic acid is an analog of the heptanoyl group. It has been shown to inhibit cancer cell growth and induce apoptosis in a variety of human tumor cells. This compound is used for the selective activation of anticancer drugs, as well as for the prevention of photodynamic damage to healthy tissue. 7-Azido-heptanoic acid can be conjugated with biomolecules such as proteins or peptides to form a bifunctional molecule that can function both as an acceptor and a donor. It also binds to streptavidin, which has been shown to have anticancer activity in mice.</p>Formula:C7H13N3O2Purity:Min. 95%Color and Shape:Colorless Clear LiquidMolecular weight:171.2 g/molFusidic acid sodium
CAS:<p>Inhibitor of protein synthesis; steroid antibiotic</p>Formula:C31H48O6•NaPurity:Min. 95%Color and Shape:PowderMolecular weight:539.7 g/molMeconic acid
CAS:<p>Meconic acid is a metal chelate that binds to metals such as zinc and copper, which are required for the synthesis of prostaglandins. Meconic acid has been shown to have significant interactions with other drugs, including sodium carbonate, acetylcholinesterase inhibitors, and antipsychotics. Meconic acid also inhibits the activity of pestivirus, which affects the nervous system in rats. Studies on long-term toxicity have not been conducted. Meconic acid has been used as a treatment for curcuma aromatica induced hepatitis and is toxic to animals at high doses.</p>Formula:C7H4O7Purity:Min. 95 Area-%Color and Shape:PowderMolecular weight:200.1 g/mol4-Bromo-2,6-difluorobenzoic acid
CAS:<p>4-Bromo-2,6-difluorobenzoic acid is a liquid crystal that belongs to the class of fluorinated benzoic acids. It is an activated liquid crystal composed of chiral molecules with substituents on the 4- and 6-positions of the aromatic ring. The compound has been shown to have excellent fluoroarene solubilizing properties in a glycol matrix and can be used as an additive to produce liquid crystals with desired properties.</p>Formula:C7H3BrF2O2Purity:Min. 95%Color and Shape:PowderMolecular weight:237 g/mol3-Trifluoromethoxyphenylboronic acid
CAS:<p>3-Trifluoromethoxyphenylboronic acid is a lead compound that has the potential to be an efficient and water-soluble inhibitor of protein kinases. It has been shown to have a significant inhibitory effect on vismodegib transport. This compound may also have anticancer properties. 3-Trifluoromethoxyphenylboronic acid binds to the active site of protein kinases, blocking their catalytic activity and inhibiting cell proliferation by interfering with the signaling pathway that regulates cancer cells.</p>Formula:C7H6BF3O3Purity:Min. 90%Color and Shape:PowderMolecular weight:205.93 g/mol1,3-Acetonedicarboxylic acid
CAS:<p>1,3-Acetonedicarboxylic acid is a crystalline solid that belongs to the group of carboxylic acids. 1,3-Acetonedicarboxylic acid interacts with its receptor by binding to a hydroxyl group and two hydrogen atoms. It has been shown that 1,3-acetonedicarboxylic acid can inhibit HIV infection in vitro by preventing the virus from attaching to cells. It also inhibits malonic acid oxidation and citric acid cycle enzymes in rat liver mitochondria. The synthesis of 1,3-acetonedicarboxylic acid can be achieved through different methods:<br><br>1) By reacting sodium carbonate with malonic acid <br>2) By reacting hydrogen fluoride with malonic acid <br>3) By reacting sodium carbonate with citric acid (malonic ester) and then hydrolyzing it <br>4) By reacting sodium carbonate with malonitrile and then hydro</p>Formula:C5H6O5Purity:Min. 95%Color and Shape:PowderMolecular weight:146.1 g/mol2-Oxo-2H-pyran-5-carboxylic acid methyl ester
CAS:<p>2-Oxo-2H-pyran-5-carboxylic acid methyl ester is an activated form of 2-oxopyran. It reacts with nucleophiles, such as malic acid, to form ethyl esters. This reaction is an example of the Friedel-Crafts reaction, which is a type of electrophilic aromatic substitution. The rate of this reaction depends on the activation energies and fluorescence properties of the reactants. The mechanism for this reaction is that the double bond in the carbonyl group is ruptured by attacking nucleophiles, resulting in a release of hydrogen gas and formation of carboxylic acid derivatives. The product can be isolated using a solvent extraction technique or purified using column chromatography.</p>Formula:C7H6O4Purity:Min. 98 Area-%Color and Shape:PowderMolecular weight:154.12 g/molAnthraquinone-2,7-disulfonic acid disodium salt - 80%
CAS:<p>Anthraquinone-2,7-disulfonic acid disodium salt, 2,7-AQDS, is an anthraquinone sulfonate used for many different purposes, such as, desulfurizing agent for removing oil in refinery and as an intermediate for dyes or decolorization agent. In addition, anthraquinone-2,7-disulfonic salt or 2,7-AQDS is frequently used in electrochemistry, as a redox mediator. For example, in aqueous organic redox flow batteries (AORFB), anthraquinone-2,7-disulfonic acid disodium salt (2,7-AQDS) plays a role in increasing the capacity and the performance of these types of batteries.</p>Formula:C14H6O8S2·2NaPurity:Min. 80 Area-%Color and Shape:Red Purple PowderMolecular weight:412.3 g/mol2,2-Dimethyl-3-phenylpropanoic acid
CAS:<p>2,2-Dimethyl-3-phenylpropanoic acid is a luteolytic agent that belongs to the group of phenylacetic acids. It has been shown to inhibit progesterone synthesis and induce regression of the estrous cycle in rats. 2,2-Dimethyl-3-phenylpropanoic acid is also able to bind with cytochrome P450 enzymes, which are involved in the metabolism of many drugs. This binding may lead to increased plasma concentrations of other drugs that are metabolized by cytochrome P450 enzymes, such as erythromycin and methyldopa.</p>Formula:C11H14O2Purity:Min. 95%Color and Shape:SolidMolecular weight:178.23 g/molCrotonic acid
CAS:<p>Crotonic acid is a metabolite of crotonaldehyde, which is found in cigarette smoke. Crotonic acid has been shown to have agonist binding site activity and inhibitory properties on the enzyme that synthesizes gamma-aminobutyric acid (GABA), an important neurotransmitter. It also has inhibitory effects on other enzymes such as fatty acid synthase, which makes it an antimicrobial agent. Crotonic acid also inhibits the growth of bacteria by binding to hydroxyl groups on their cell walls, which are important for maintaining their structure. Crotonic acid has been shown to have anti-inflammatory properties in mice and rats.</p>Formula:C4H6O2Purity:Min. 98 Area-%Color and Shape:PowderMolecular weight:86.09 g/mol(2R)-2-Acetamido-3-acetylsulfanyl-propanoic acid
CAS:<p>2-Acetamido-3-acetylsulfanylpropanoic acid is a pharmaceutical preparation that has been shown to have antitumor activity in cell lines derived from human breast, colon, lung, and prostate cancer. It has been shown to inhibit the growth of tumour cells by inducing apoptosis. The mechanism of action may be due to its ability to bind with fatty alcohols and hydroxyapatite in the acidic environment of cancer cells. This binding prevents the formation of fatty acid radicals and cancerous substances. 2-Acetamido-3-acetylsulfanylpropanoic acid also has anticancer activity when it is used on cell lines derived from human colorectal carcinoma.</p>Formula:C7H11NO4SPurity:Min. 95 Area-%Color and Shape:White Off-White PowderMolecular weight:205.23 g/mol3,4,5-Trimethoxybenzoic acid
CAS:<p>3,4,5-Trimethoxybenzoic acid is an experimental drug that has been shown to have significant cytotoxicity in a chronic oral model. It inhibits the activity of a number of enzymes including esterases, lipases, and proteases. This compound also showed significant cytotoxicity when tested in the water vapor chronic inhalation model. 3,4,5-Trimethoxybenzoic acid may be toxic to humans because it binds to calcium channels and inhibits the release of ryanodine from its storage sites on the sarcoplasmic reticulum. This inhibition may lead to muscle cramps and tetany as well as cardiac arrhythmias. The toxicity of 3,4,5-trimethoxybenzoic acid has been studied in rats using a number of methods including titration calorimetry and chlorogenic acids extraction from rat liver.</p>Formula:C10H12O5Purity:Min. 95%Color and Shape:PowderMolecular weight:212.2 g/mol(Asn(4-aminobutyl)1·7·23,Gln(4-aminobutyl)3·11·22)-Amyloid b-Protein (1-40) trifluoroacetate salt
<p>Please enquire for more information about (Asn(4-aminobutyl)1·7·23,Gln(4-aminobutyl)3·11·22)-Amyloid b-Protein (1-40) trifluoroacetate salt including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Formula:C218H355N65O52SPurity:Min. 95%Molecular weight:4,750.62 g/mol(E,E)-Piperic acid
CAS:<p>Piperic acid is a metal chelate that has synergistic effects with other antimicrobial agents. It can be used to treat infectious diseases and carcinoma. Piperic acid is a natural compound found in plants, fruits, and vegetables, which has been shown to inhibit drug transporter proteins P-glycoprotein (P-gp) in the mitochondrial membrane potential. This inhibits the transport of drugs from outside the cell into the mitochondrial membrane, which also prevents the production of reactive oxygen species.</p>Formula:C12H10O4Purity:Min. 95%Color and Shape:Yellow To Green SolidMolecular weight:218.21 g/molIodomesitylene Diacetate
CAS:<p>Iodomesitylene Diacetate is a chemical building block with versatile applications. This compound can react with a variety of reagents to form useful scaffolds for synthetic organic chemistry, or it can be used as a useful intermediate in the synthesis of more complicated molecules. Iodomesitylene Diacetate is also an excellent starting material for the production of complex compounds such as pharmaceuticals, polymers, and agrochemicals. It is stable at room temperature and has a high quality.</p>Formula:C13H17IO4Purity:(Iodometric Titration) Min. 98%Color and Shape:White To Off-White To Yellow SolidMolecular weight:364.18 g/mol6-Aminonicotinic acid
CAS:<p>6-Aminonicotinic acid is an inhibitor of bacterial DNA gyrase and topoisomerase IV. It has been shown to inhibit the growth of a number of bacteria, including E. coli K-12, with potent inhibitory activity against these enzymes. 6-Aminonicotinic acid binds to the active sites on these enzymes and prevents them from working. The detection time for 6-aminonicotinic acid is about 3 hours after exposure. 6-Aminonicotinic acid has been shown to be more potent than other inhibitors of bacterial DNA gyrase and topoisomerase IV such as 2,4-diaminopyrimidine (2,4DAP).</p>Formula:C6H6N2O2Purity:Min. 95%Color and Shape:White PowderMolecular weight:138.12 g/mol4-(Trifluoromethoxy)phenylacetic acid
CAS:<p>4-(Trifluoromethoxy)phenylacetic acid is a useful scaffold, versatile building block, and useful intermediate in organic synthesis. It is a speciality chemical that is used as a reaction component in the preparation of complex compounds. 4-(Trifluoromethoxy)phenylacetic acid is also a reagent for the synthesis of high-quality pharmaceuticals, such as antibiotics and antiviral agents. This compound has CAS No. 4315-07-5 and can be found at Chemicals Online.</p>Formula:C9H7F3O3Purity:Min. 95%Color and Shape:PowderMolecular weight:220.15 g/molrac cis-9,10-Epoxystearic acid
CAS:<p>Rac cis-9,10-epoxystearic acid is a fatty acid that is used as a surfactant. It has been shown to have a kinetic effect on Saccharomyces cerevisiae and has been found to increase the activity of enzymes such as phospholipase A2, lipase, and esterase. Rac cis-9,10-epoxystearic acid also increases the rate of chemical ionization when exposed to sephadex g-100. This compound has been shown to be effective in vivo against human liver cells and has been found to have an epoxide group on each side of the molecule. The enantiomer of rac cis-9,10-epoxystearic acid is hydrated in water or ethanol and reacts with alcohols in the presence of an oxidizing agent to form epoxides. Rac cis-9,10-epoxystearic acid can catalyze reactions involving epoxides.</p>Formula:C18H34O3Purity:Min. 98 Area-%Color and Shape:White PowderMolecular weight:298.46 g/mol3-Amino-4-anisic acid
CAS:<p>3-Amino-4-anisic acid is a conjugate of an aromatic carboxylic acid and an amino group. The vapor pressure of 3-amino-4-anisic acid is higher than that of the free 3-amino-4-anisic acid. Immunocompetent cells are the most sensitive to this compound, with metastasis and tumor growth being inhibited. This compound is also used in the treatment of cancer, although it has not been proven to be effective for all cancers. Sorafenib and other compounds that have similar structures may be used as substitutes for 3-amino-4-anisic acid in some cases. There are two isomers of 3-amino-4-anisic acid: cis and trans form. The cis form has better binding properties than the trans form, which can lead to decreased efficacy when a mixture of both forms is used. Hyaluronic acid and link</p>Formula:C8H9NO3Purity:Min. 95%Color and Shape:PowderMolecular weight:167.16 g/molIndole-2-acetic acid
CAS:<p>Indole-2-acetic acid is a coumarin derivative that is found in plants and is used as a dietary supplement. It has been shown to have an inhibitory effect on photosynthetic activity and the growth of bacteria, fungi, and protozoa. Indole-2-acetic acid can be produced by chemical reactions involving aromatic hydrocarbons such as benzene or dioxane. It also inhibits the production of insulin in vivo and has been shown to reduce insulin resistance in rats.</p>Formula:C10H9NO2Purity:Min. 95%Color and Shape:PowderMolecular weight:175.18 g/molCitric acid anhydrous
CAS:<p>Citric acid is an organic compound that is a weak organic acid. It is a colorless, odorless solid with a sour taste. Citric acid participates in many biochemical reactions, including the citric acid cycle and fatty acid metabolism. Citric acid can be found in many citrus fruits, such as lemons, limes, and grapefruits. Citric acid also has antioxidant properties and functions as an anti-inflammatory agent. Citric acid is used for the production of citrates and citrate salts, which are added to food preservatives or acidic foods such as lemonade or vinegar. Citric acid can be used to measure water vapor concentration by using fluorescence probes that react with hydrated electrons in water molecules. It also has electrochemical impedance spectroscopy (EIS) applications in biomedical research and biotechnology as an enzyme inhibitor or activator.</p>Formula:C6H8O7Purity:Min. 95%Color and Shape:Colorless PowderMolecular weight:192.12 g/molβ-Naphthylacetate
CAS:<p>Beta-naphthylacetate is a chemical that is used in the synthesis of pharmaceuticals and pesticides. It is an ester of naphthalene and acetic acid. Beta-naphthylacetate has been shown to inhibit the enzyme activity of hydrogen fluoride, which is used in the production of polyester fibers. Beta-naphthylacetate has also been shown to have anti-inflammatory properties by inhibiting prostaglandin synthesis. This chemical also has epoxidase activity, which makes it useful in the conversion of dl-alpha-tocopherol to vitamin E. Beta-naphthylacetate is soluble in water and can be made into solid dispersions or cationic surfactant solutions with high concentrations of beta-naphthylacetate, making it useful for tissue culture. The optimum pH for beta-naphthylacetate is between 7 and 8, while the optimum temperature range is between 25</p>Formula:C12H10O2Purity:Min. 95%Color and Shape:White PowderMolecular weight:186.21 g/mol4-Chloro-3-nitrobenzoic acid ethyl ester
CAS:<p>4-Chloro-3-nitrobenzoic acid ethyl ester is a six-membered, planar, hydrogen bond that has a crystal structure with a six-membered ring. It has hydrogen bonds and five-membered ring. The molecule is coplanar and oriented.</p>Formula:C9H8ClNO4Purity:Min. 95%Color and Shape:PowderMolecular weight:229.62 g/mol4-Fluoro-2-methoxybenzoic acid
CAS:<p>4-Fluoro-2-methoxybenzoic acid is a versatile building block that is used in the synthesis of many complex compounds. It is a reagent, which means it can be used as an intermediate in the synthesis of other compounds. 4-Fluoro-2-methoxybenzoic acid is also a useful scaffold for the preparation of new chemical entities with specific pharmaceutical properties. The CAS number for this compound is 395-82-4.</p>Formula:C8H7FO3Purity:Min. 95%Color and Shape:PowderMolecular weight:170.14 g/mol5-Bromo-2-ethoxybenzoic acid
CAS:<p>5-Bromo-2-ethoxybenzoic acid is a versatile building block that can be used as a reagent, speciality chemical, or a useful scaffold. It is used in the synthesis of complex compounds that include pharmaceuticals, agrochemicals, and research chemicals. 5-Bromo-2-ethoxybenzoic acid is also a useful intermediate and reaction component in organic synthesis. This compound has high quality and is listed on the Chemical Abstract Service (CAS) registry number 60783-90-6.</p>Formula:C9H9BrO3Purity:Min. 95%Color and Shape:SolidMolecular weight:245.07 g/mola-Ketoglutaric acid
CAS:<p>a-Ketoglutaric acid is a naturally occurring organic compound that is found in the body as well as in plants. It belongs to the group of organic acids and is produced from the breakdown of amino acids, such as leucine and valine. a-Ketoglutaric acid has been shown to have physiological effects on cells and tissues by inhibiting enzymes involved in energy metabolism. In vitro assays have shown that a-ketoglutaric acid has inhibitory properties against plant metabolism. This drug also inhibits the transcriptional regulation of genes for fatty acid synthesis in human erythrocytes.<br>A-ketoglutaric acid has also been shown to inhibit glucose production in rat liver cells, which may be due to its ability to bind covalently with proteins or lipids, changing their structures and functions.</p>Formula:C5H6O5Color and Shape:White Off-White PowderMolecular weight:146.1 g/mol2-((4-(2-Furylcarbonyl)piperazinyl)carbonyl)cyclohexanecarboxylic acid
CAS:<p>Please enquire for more information about 2-((4-(2-Furylcarbonyl)piperazinyl)carbonyl)cyclohexanecarboxylic acid including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Formula:C17H22N2O5Purity:Min. 95%Color and Shape:PowderMolecular weight:334.37 g/mol5-Ethylindole-3-acetic acid
CAS:<p>5-Ethylindole-3-acetic acid is a high quality chemical that is an intermediate in the synthesis of a variety of complex compounds. It is also a reagent for many reactions and can be used as a building block for more complex compounds. 5-Ethylindole-3-acetic acid has been shown to have antihistamine, analgesic, and antipyretic properties and is useful in treating allergic reactions.</p>Formula:C12H13NO2Purity:Min. 95%Molecular weight:203.24 g/mol3-Fluoro-5-methylbenzoic acid
CAS:<p>3-Fluoro-5-methylbenzoic acid is a sulfilimine that has been shown to have insecticidal, functional, and biological activities. 3-Fluoro-5-methylbenzoic acid binds to the enzyme diamide reductase in insects, which prevents the production of toxic amines in insects. 3-Fluoro-5-methylbenzoic acid also inhibits the synthesis of anthranilic acid and organosulfur compounds in plants. This sulfilimine is structurally similar to other insecticides such as DDT and carbofuran. It is soluble in water but insoluble in organic solvents.</p>Formula:C8H7FO2Purity:Min. 95%Color and Shape:PowderMolecular weight:154.14 g/molAmino(naphthalen-2-yl)acetic acid
CAS:<p>Amino(naphthalen-2-yl)acetic acid is a versatile chemical building block that can be used in research, industry and as a high quality reagent. It is a useful scaffold for the synthesis of complex compounds. Amino(naphthalen-2-yl)acetic acid has been shown to be an excellent reactant for the production of fine chemicals and is high quality, with a purity of 99%. This product is also used as a speciality chemical for the production of pharmaceuticals, pesticides, and other chemical products.</p>Formula:C12H11NO2Purity:Min. 95%Color and Shape:PowderMolecular weight:201.22 g/mol4-Isobutylcinnamic acid
CAS:<p>4-Isobutylcinnamic acid is an organic compound that is a derivative of the organic compound acrylic acid. It is an organic ester, which means it is formed by the reaction of an alcohol and an acid. Acrylic acid can be reacted with either ethyl alcohol or isobutyl alcohol to produce 4-isobutylcinnamic acid. The resulting product can be used in the production of polymers and plastics.</p>Formula:C13H16O2Purity:Min. 95%Color and Shape:PowderMolecular weight:204.26 g/molEthyl 5-methylindole-2-carboxylate
CAS:<p>Ethyl 5-methylindole-2-carboxylate is an antioxidant that is used as a reagent in the synthesis of other compounds. It has been shown to inhibit cancer cell growth in vitro via its ability to inhibit the metabolic activity of human hepatoma cells. Ethyl 5-methylindole-2-carboxylate has also been shown to have cytotoxic activity against human hepatoma cells in vitro, and may be a potential anticancer drug candidate.</p>Formula:C12H13NO2Purity:Min. 95%Color and Shape:PowderMolecular weight:203.24 g/mol2-((2,4-Dichlorophenyl)amino)-1,3-thiazole-4-carboxylic acid
CAS:Please enquire for more information about 2-((2,4-Dichlorophenyl)amino)-1,3-thiazole-4-carboxylic acid including the price, delivery time and more detailed product information at the technical inquiry form on this pagePurity:Min. 95%3-Methoxy-5-nitrobenzoic acid
CAS:<p>3-Methoxy-5-nitrobenzoic acid is an organic compound that has mesomorphic and switchable properties. It is a chalcone derivative, with homologues such as 3-hydroxybenzoic acid. It is synthesized from the reaction of nitrous acid and 3-methoxybenzoic acid. The synthesis of this compound can be achieved by two different routes: peroxide oxidation or fluorine substitution. Both routes produce the same product, but offer different advantages. The first route involves the addition of hydrogen peroxide to 3-methoxybenzoic acid, which produces a mixture of products containing 3-methoxy-5-nitrobenzoic acid. This route is advantageous in that it can be conducted at room temperature with high yields, but the disadvantage is that this method produces a mixture of products which may contain undesired byproducts. The second route involves the use of sodium hypofluorite and potassium</p>Formula:C8H7NO5Purity:Min. 95%Color and Shape:PowderMolecular weight:197.14 g/mol4-(4-Formyl-3-methoxyphenoxy)butanoic acid
CAS:Controlled Product<p>4-(4'-Formyl-3'-methoxyphenoxy)butanoic acid is a carboxylate that can be used as a preloaded reagent for the synthesis of peptides, proteins, and other organic molecules. 4-(4'-Formyl-3'-methoxyphenoxy)butanoic acid has been shown to be an efficient linker for solid-phase peptide synthesis. 4-(4'-Formyl-3'-methoxyphenoxy)butanoic acid is labile to hydrolysis and so should be stored in an organic solvent such as dimethylsulfoxide. The carboxylate group is readily available in the form of its sodium salt, which can be synthesized by reacting sodium acetate with formaldehyde.</p>Formula:C12H14O5Purity:Min. 95%Color and Shape:PowderMolecular weight:238.24 g/mol1,2,3-Benzenetricarboxylic acid hydrate
CAS:1,2,3-Benzenetricarboxylic acid hydrate (BTAH) is a molecule that has been studied as a potential photosensitizer for photodynamic therapy. This compound is an organic semiconductor with a wide absorption spectrum and a large quantum yield in the visible region. It also has high charge carrier mobility, which makes it suitable for use in electronic devices. BTAH is an additive that can be used to inhibit the formation of cancer cells and reduce inflammation. BTAH has been shown to have anti-inflammatory properties by inhibiting prostaglandin synthesis. The molecular structure of BTAH consists of three benzene rings joined together by two carboxyl groups. The central ring in this molecule is also known as 1,2,3-benzenetricarboxylic acid or 3,4-dihydroxybenzoic acid.Formula:C9H6O6·xH2OPurity:Min. 98 Area-%Color and Shape:PowderMolecular weight:210.14 g/molSex Pheromone Inhibitor iPD1 trifluoroacetate salt
CAS:<p>Sex pheromone inhibitor IPD1 is an antibody that inhibits the production of sex pheromones by Streptococcus faecalis. It is used to diagnose and treat allergic diseases, such as atopic dermatitis or bronchial asthma. This antibody binds to a protein called polypide, which is involved in the synthesis of sex pheromones, and inhibits its activity. It has been shown to inhibit the production of sex pheromones by Streptococcus faecalis when analyzed using an SDS-polyacrylamide gel electrophoresis method. Sex pheromone inhibitor IPD1 also binds to antibodies against streptococcus, acari, and other bacteria.</p>Formula:C39H72N8O11Purity:Min. 95%Color and Shape:PowderMolecular weight:829.04 g/molMeclofenamic acid
CAS:<p>Meclofenamic acid is a nonsteroidal anti-inflammatory drug (NSAID) that inhibits the activity of cyclooxygenase and lipoxygenase. It is used for the treatment of mild to moderate pain, dysmenorrhea, and menstrual cramps. Meclofenamic acid binds to polymerase chain reaction (PCR) substrate-binding site, inhibiting DNA synthesis in rat hippocampal neurons. This drug has also been shown to suppress disease activity in animals with experimental arthritis. Meclofenamic acid can be administered orally or intravenously without altering its effect on disease activity or blood sampling results. The drug is rapidly metabolized by hydroxylation and conjugation with glucuronic acid, followed by excretion in urine or feces. Meclofenamic acid significantly cytotoxic to human polymorphonuclear leukocytes at high concentrations, which may be due to its ability to modify RNA synthesis and protein synthesis.</p>Formula:C14H11Cl2NO2Purity:Min. 95%Color and Shape:White PowderMolecular weight:296.15 g/molPoly(3-hydroxybutyric acid-co-3-hydroxyvaleric acid)
CAS:<p>Poly(3-hydroxybutyric acid-co-3-hydroxyvaleric acid) is a biodegradable polymer that has been shown to have high water vapor permeability and low values for water uptake and swelling. The polymer is also biocompatible, with no cytotoxicity or hemolysis. Poly(3-hydroxybutyric acid-co-3-hydroxyvaleric acid) was synthesized by ring opening polymerization of 3-hydroxybutyric acid and 3-hydroxyvaleric acid. The polymer has shown synergistic effects when used in combination with other polymers, such as polyvinyl alcohol. Poly(3-hydroxybutyric acid-co-3-hydroxyvaleric acid) can be used in tissue culture as a scaffold for the growth of animal cells.</p>Color and Shape:Powder2-(1-Naphthoxy)-acetic acid
CAS:<p>2-(1-Naphthoxy)-acetic acid is a natural product that is found in urine samples. It has been found to have various biological effects, such as inhibiting sugar transport and root formation. 2-(1-Naphthoxy)-acetic acid can also be used to inhibit the transcription of certain genes by interacting with the response elements for these genes. 2-(1-Naphthoxy)-acetic acid binds to monoclonal antibodies and can be used in immunoprecipitation experiments.</p>Formula:C12H10O3Purity:Min. 95%Color and Shape:PowderMolecular weight:202.21 g/mol2,4-Bis(trifluoromethyl)benzoic acid
CAS:<p>2,4-Bis(trifluoromethyl)benzoic acid (2,4-BTFBA) is a styrene derivative that can be used as a matrix in the preparation of polystyrene for MALDI mass spectrometry analysis. 2,4-BTFBA is a monomer that has been shown to lead to high yields and transfer in the production of polystyrene and poly(methyl methacrylate). It has also been found to be an effective inhibitor of 2,5-dihydroxybenzoic acid (DHBA) and other DHBA derivatives. The inhibition mechanism of 2,4-BTFBA on DHBA activity is not yet clear. The nature of this compound as well as its use in matrix-assisted laser desorption/ionization are still under investigation.</p>Formula:C9H4F6O2Purity:Min. 95%Color and Shape:PowderMolecular weight:258.12 g/molethyl 4-(prop-2-enylamino)-3,5-thiazolecarboxylate
CAS:<p>Please enquire for more information about ethyl 4-(prop-2-enylamino)-3,5-thiazolecarboxylate including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Purity:Min. 95%Dehydroabietic acid
CAS:<p>Dehydroabietic acid is a compound that belongs to the class of natural products. It has been shown to have anticancer activity in 3T3-L1 preadipocytes, which are cells that are used for research on obesity and diabetes. Dehydroabietic acid inhibits mitochondrial membrane potential and induces apoptosis in cancer cell lines, including carcinoma cells. This compound has also shown synergistic effects with other compounds in inhibiting the growth of tumor cells.</p>Formula:C20H28O2Purity:Min. 90 Area-%Color and Shape:White Off-White PowderMolecular weight:300.44 g/mol3-Cyanocinnamic acid
CAS:<p>3-Cyanocinnamic acid is a reactive, unreactive, and stepwise cycloaddition compound. It can participate in photochemical reactions with other compounds to form photodimers. 3-Cyanocinnamic acid has an optimal reaction temperature of 100°C and a reaction time of 5 minutes. The diradical nature of 3-cyanocinnamic acid makes it sensitive to UV light, and the photochemical reactions are simulated by quantum mechanics calculations. Photodimerisation simulations show that 3-cyanocinnamic acid is capable of forming photodimers with 2-cyanocinnamic acid or 4-cyanocinnamic acid at room temperature.</p>Formula:C10H7NO2Purity:Min. 95%Color and Shape:PowderMolecular weight:173.17 g/mol3-(3-Hydroxyisoxazol-5-yl)propanoic acid
CAS:<p>3-(3-Hydroxyisoxazol-5-yl)propanoic acid is a fine chemical used as a reagent, speciality chemical, and reaction component in the synthesis of complex compounds. It is also used as a building block or scaffold in the synthesis of other compounds. 3-(3-Hydroxyisoxazol-5-yl)propanoic acid is less reactive than other carboxylic acids due to its bulky group at one end. This makes it more stable and easier to handle. 3-(3-Hydroxyisoxazol-5-yl)propanoic acid can be used for research purposes and has been shown to be an effective inhibitor of HIV protease.</p>Formula:C6H7NO4Purity:Min. 95 Area-%Color and Shape:PowderMolecular weight:157.12 g/mol3-Maleimidopropionic acid
CAS:<p>3-Maleimidopropionic acid, also abbreviated as 3MPA or BMPA, reacts with thiols to form stable conjugates. It is non-cleavable under standard biological conditions.</p>Formula:C7H7NO4Purity:Min. 95%Color and Shape:PowderMolecular weight:169.13 g/mol3,4-Dimethyl-6-nitrobenzoic acid
CAS:<p>3,4-Dimethyl-6-nitrobenzoic acid is a nitrated aromatic compound that has been shown to have anticancer activity. It is used as an anticancer agent in the treatment of cancers such as leukemia, lymphoma, and lung cancer. 3,4-Dimethyl-6-nitrobenzoic acid has been shown to be effective against species diversity and diversity of tumor cells. This compound inhibits protein synthesis by binding to ribosomes and inhibiting the production of proteins vital for cell division. 3,4-Dimethyl-6-nitrobenzoic acid also binds to DNA and interferes with transcription and replication of DNA, causing cell death. This compound has been found in wetlands (e.g., <br>the Yangtze River) but its function in these ecosystems is not known.</p>Formula:C9H9NO4Purity:Min. 95%Color and Shape:PowderMolecular weight:195.17 g/molOvalbumin (257-264) (chicken) acetate salt
CAS:<p>Ovalbumin (257-264) is an acetate salt of a fragment of the protein ovalbumin.</p>Formula:C45H74N10O13Purity:Min. 95%Color and Shape:SolidMolecular weight:963.13 g/mol3-Amino-4-methylbenzoic acid methyl ester
CAS:<p>3-Amino-4-methylbenzoic acid methyl ester (3AMB) is an organic compound that is used as a reagent in the synthesis of amides. It can also be used to synthesize various heterocycles by reacting with aldehydes and ketones. 3AMB has been used as a substrate in assays for amines, yielding high yields. The compound's unsymmetrical structure can be attributed to the presence of different substituents on either side of the central carbon atom. 3AMB has been shown to inhibit metal ion enzymes such as dioxygenases and nitric oxide synthases, which are involved in the metabolism of nitric oxide and oxygen respectively. In addition, 3AMB has been shown to have anti-inflammatory properties and may be a potential candidate for use as an anticoagulant or antiplatelet drug.br>br><br>br>br><br>3AMB is</p>Formula:C9H11NO2Purity:Min. 95%Color and Shape:PowderMolecular weight:165.19 g/mol4-Chloro-3-nitrobenzoic acid methyl ester
CAS:<p>4-Chloro-3-nitrobenzoic acid methyl ester is a chemical compound that inhibits the synthesis of nucleic acids. It binds to the functional groups of DNA, preventing replication and transcription. 4-Chloro-3-nitrobenzoic acid methyl ester also inhibits protein synthesis by inhibiting ribosomal RNA which is required for translation. This agent has been shown to induce apoptotic cell death in leukemia cells, HL60 cells, and other types of cancer cells in vitro. 4-Chloro-3-nitrobenzoic acid methyl ester has a potent inhibitory activity against replicons in vitro and is a synthetic molecule with two sulfoxide functional groups.</p>Formula:C8H6ClNO4Purity:Min. 95%Color and Shape:PowderMolecular weight:215.59 g/mol2-Chloro-3,5-dinitrobenzoic acid
CAS:<p>2-Chloro-3,5-dinitrobenzoic acid is a chemical reagent that belongs to the group of p2-substituted benzenes. It is used in organic synthesis as a synthon for dimethylnaphthalene, which is an intermediate in the production of polyester fibers and polyurethane. The compound has been shown to induce apoptosis in prostate cancer cells. This effect may be due to its ability to react with amines and form nitrosating species, which may cause DNA damage. 2-Chloro-3,5-dinitrobenzoic acid can also react with 5-nitrosalicylic acid to form a stepwise reaction product.</p>Formula:C7H3ClN2O6Purity:Min. 95%Color and Shape:PowderMolecular weight:246.56 g/mol5-Formyl-2-thiopheneboronic acid
CAS:<p>5-Formyl-2-thiopheneboronic acid is a synthetic molecule that has been shown to be an effective electron microscope stabilizer. It is a boronate ester with a formyl group at the 2-position and a thiophene ring at the 5-position. The chloride in this molecule is used as a functional group, which can then react with other molecules to form new compounds. The functional theory of 5-formyl-2-thiopheneboronic acid includes its ability to form bonds with other molecules and its use as an inorganic base. The particle size of 5-formyl-2-thiopheneboronic acid is unsymmetrical, making it different from other molecules.</p>Formula:C5H5BO3SPurity:Min. 95%Color and Shape:PowderMolecular weight:155.97 g/mol

