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Organic Halides

Organic Halides

In this category, you can find organic molecules containing one or more halogen atoms in their structure. These organic halides include brominated, iodinated, chlorinated, and cyclic halide compounds. Organic halides are widely used in organic synthesis, pharmaceuticals, agrochemicals, and materials science due to their reactivity and ability to undergo a variety of chemical transformations. At CymitQuimica, we offer a comprehensive selection of high-quality organic halides to support your research and industrial applications, ensuring reliable and effective performance in your synthetic and analytical projects.

Subcategories of "Organic Halides"

Found 20437 products of "Organic Halides"

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  • (Fluoro-Methylphosphoryl)Oxycyclohexane

    Controlled Product
    CAS:
    <p>(Fluoro-Methylphosphoryl)Oxycyclohexane is an organophosphorus compound that acts as a nerve agent. It inhibits the enzyme acetylcholinesterase, which is responsible for breaking down acetylcholine, leading to excess cholinergic stimulation. This can cause excessive contraction of muscles or even death. The exposure to (Fluoro-Methylphosphoryl)Oxycyclohexane can be detected by analytical methods such as gas chromatography/mass spectrometry. Oximes are used in the reactivation of acetylcholinesterase and are effective in preventing neuronal death. They bind to the phosphonyl group in (Fluoro-Methylphosphoryl)Oxycyclohexane and prevent it from inhibiting the enzyme acetylcholinesterase.</p>
    Formula:C7H14FO2P
    Purity:Min. 95%
    Molecular weight:180.16 g/mol

    Ref: 3D-FF84720

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  • Tryptamine hydrochloride

    Controlled Product
    CAS:
    <p>Tryptamine hydrochloride is a tryptamine that is used in the synthesis of various drugs with antiinflammatory properties. It has been shown to be a potent and selective antagonist of 5-HT2 receptors, with a pKi value of 7.4. Tryptamine hydrochloride has also been found to have an inhibitory effect on mitochondrial membrane potential and to decrease human serum 5-HT levels at physiological doses. This drug is structurally related to serotonin, which is believed to be a cause for its antiinflammatory activity.</p>
    Formula:C10H12N2HCl
    Purity:Min. 95%
    Color and Shape:Brown White Yellow Orange Powder
    Molecular weight:196.68 g/mol

    Ref: 3D-FT37087

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  • N-Ethyl-N-(2-hydroxyethyl)perfluorooctylsulphonamide

    Controlled Product
    CAS:
    <p>N-Ethyl-N-(2-hydroxyethyl)perfluorooctylsulphonamide is a novel glycol ester with cytotoxic effects. It has been shown to inhibit the growth of cancer cells in rat liver microsomes and in vivo. N-Ethyl-N-(2-hydroxyethyl)perfluorooctylsulphonamide inhibits the synthesis of fatty acids by inhibiting the enzyme lipoxygenase. This drug also has a reactive carbon nanotube that may be used as an anticancer agent, which can bind to cell membranes and disrupt their function.</p>
    Formula:C12H10F17NO3S
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:571.25 g/mol

    Ref: 3D-FE104045

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  • Sodium fluorosilicate

    Controlled Product
    CAS:
    <p>Sodium fluorosilicate is an inorganic acid that can be prepared by dissolving sodium carbonate and hydrogen fluoride in water. It is used as a sample preparation agent for electrochemical impedance spectroscopy, as well as a reagent for the determination of acidic properties. Sodium fluorosilicate has been shown to inhibit the growth of epidermal cells, which may be due to its ability to cause an increase in the mitochondrial membrane potential. This compound also inhibits the synthesis of proteins from RNA, which may result from its coordination geometry or hydrogen-bonding interactions. Sodium fluorosilicate has been used in analytical methods involving x-ray diffraction data and plasma mass spectrometry.</p>
    Formula:Na2SiF6
    Purity:Min. 95%
    Molecular weight:188.06 g/mol

    Ref: 3D-FS38874

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  • Difluoroamine

    Controlled Product
    CAS:
    <p>Difluoroamine is a chemical compound that is used in the production of organic compounds. It has been shown to have high stability and detection sensitivity, which is attributed to its hydrogen bond forming ability. Difluoroamine also reacts with trifluoroacetic acid and hydrogen fluoride, both of which are strong acids. The reaction mechanism of difluoroamine involves the protonation of nitrogen atoms on the molecule followed by a nucleophilic attack on the electrophilic carbon atom that results in the formation of an amine group. This reaction can be carried out in a flow system as well as in a batch process. Difluoramine is an intermediate product during this process and can be converted into glycol ethers or nitrobenzene.</p>
    Formula:F2HN
    Purity:Min. 95%
    Molecular weight:53.01 g/mol

    Ref: 3D-FD77087

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  • 3-Bromo-5-isopropyl-1,2,4-oxadiazole

    CAS:
    <p>3-Bromo-5-isopropyl-1,2,4-oxadiazole is a radiocarbon that was first detected in the atmosphere of Earth in the 1960s. It is produced by natural processes and is emitted into the atmosphere by human activities. 3-Bromo-5-isopropyl-1,2,4-oxadiazole has been found to be present in humans and other animals, as well as plants and soil. This compound has been detected in different parts of China and has been shown to be related to human activities. The evolution of 3-bromo-5-isopropyl-1,2,4 oxadiazole can be analysed using semantic approaches such as ideology sampling or repairing. Factors that may affect the production of 3-bromo 5 isopropyl 1 2 4 oxadiazole include climate change and technological development.</p>
    Formula:C5H7BrN2O
    Purity:Min. 95%
    Color and Shape:Colorless Powder
    Molecular weight:191.03 g/mol

    Ref: 3D-FB123862

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  • 4,4'-Difluorobenzhydrol

    CAS:
    <p>4,4'-Difluorobenzhydrol is an inhibitor of the dopamine reuptake transporter. It is a fluorescent derivative of 4-fluorobenzhydrol and has a piperazine group as an analog to 4-fluoropiperazine. The reaction rate of the drug was determined in vitro by measuring fluorescence intensity over time. The analog is more potent than the original molecule and has a longer half-life in the body. Phase liquid chromatography was used to analyze the drugs in vivo studies. Coatings containing this agent are under development for use as anticaries agents.</p>
    Formula:C13H10F2O
    Purity:Min. 98%
    Color and Shape:White To Off-White To Light Brown Solid
    Molecular weight:220.21 g/mol

    Ref: 3D-FD38587

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  • Fluorescein

    CAS:
    <p>Fluorescein is a fluorescent molecule often used in in vitro assays, immunohistochemistry, microscopy, and clinical analytics. Fluorescein is not a natural product and was first synthesized in 1871 by Adolf von Baeyer, a later Nobel-prize winner for his work on organic dyes. Fluorescein has an absorption maximum of 494 nm and an emission maximum of 512 nm; these values can however slightly change depending on the solution medium.<br>Fluorescein is used clinically in ophthalmology to assess the blood flow in the eye blood vessels and to detect eye injuries such as foreign bodies and possible abrasions. Interestingly, fluorescein has been found to possess peroxidase activity under certain conditions.</p>
    Formula:C20H12O5
    Color and Shape:Powder
    Molecular weight:332.31 g/mol

    Ref: 3D-FF23342

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  • Magnesium hexafluorosilicate hexahydrate

    CAS:
    <p>Magnesium hexafluorosilicate hexahydrate is a fine chemical that can be used as a versatile building block in the synthesis of organic compounds. It can also be used as a reaction component and provides a speciality chemical reagent for research purposes. Magnesium hexafluorosilicate hexahydrate is an intermediate in the synthesis of other chemicals and has been commercially available since 2006. This compound can also be used as a catalyst for the polymerization of polystyrene, polyurethane, and polyester resins. Magnesium hexafluorosilicate hexahydrate is high quality and is not hazardous to health or the environment.</p>
    Formula:F6Si•(H2O)6•Mg
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:274.47 g/mol

    Ref: 3D-FH106107

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  • Sodium fluoride

    Controlled Product
    CAS:
    <p>Sodium fluoride is a chemical that can be used to treat water and wastewater. It is an effective inhibitor of the growth of bacteria, fungi, and algae. The use of sodium fluoride improves the quality of drinking water by reducing levels of hydrogen ion and trihalomethanes (THMs). This chemical also has been shown to have beneficial effects in patients with inflammatory bowel disease. Sodium fluoride inhibits the activity of enzymes in mitochondria, which are responsible for converting food into energy. The inhibition leads to a decrease in the production of free radicals and reactive oxygen species, which may reduce oxidative stress in the body.</p>
    Formula:NaF
    Purity:Min. 95%
    Color and Shape:White Powder
    Molecular weight:41.99 g/mol

    Ref: 3D-FS29949

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  • Potassium hexafluoronickelate(IV)

    CAS:
    <p>Potassium hexafluoronickelate is a chemical compound that is a versatile building block and can be used as a reagent in organic synthesis. It is also an important intermediate for the preparation of other chemicals, such as potassium hexafluoroarsenate, which is used to make perfluorocarbons. Potassium hexafluoronickelate has many uses as a research chemical and as an intermediate in the production of other compounds. The compound has been shown to be useful in reactions involving carbon-carbon bond formation, such as the synthesis of heterocycles. Potassium hexafluoronickelate can also be used to produce metal complexes for use in catalysis or polymerization reactions.</p>
    Formula:F6K2Ni
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:250.88 g/mol

    Ref: 3D-FD82203

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  • Ammonium hexafluorotitanate(iv)

    CAS:
    <p>Ammonium hexafluorotitanate(IV) is a fine chemical that can be used as a reagent, building block, or intermediate in the synthesis of other chemicals. It is a versatile building block and reacts with other compounds to form complex compounds. Ammonium hexafluorotitanate(IV) is also an intermediate for the production of ammonium hexafluorophosphate (III), which is used in the manufacture of fertilizers. Ammonium hexafluorotitanate(IV) can be used as a reactant to produce titanium metal, which has many industrial applications.</p>
    Formula:F6H8N2Ti
    Purity:Min. 95%
    Color and Shape:White Solid
    Molecular weight:197.93 g/mol

    Ref: 3D-FA105292

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  • 2-(Chloromethyl)-1,2-epoxybutane

    CAS:
    Formula:C5H9ClO
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:120.58

    Ref: 3B-C2429

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  • Potassium fluoroaluminate

    CAS:
    <p>Potassium fluoroaluminate (KAlF) is a reactive chemical compound that is used as a reducing agent in metallurgical processes. KAlF is not an aluminothermic reaction product, but it can be produced as a by-product of the reaction between aluminum and hydrogen fluoride. It is produced when potassium reacts with hydrogen fluoride in the presence of sodium carbonate or boron nitride. KAlF does not produce stable complexes with zinc or magnesium, but it does stabilize zirconium oxide to some extent. The human serum contains antibodies against KAlF particles, which may cause allergic reactions following inhalation or skin contact.</p>
    Formula:AlF4•K
    Color and Shape:Powder
    Molecular weight:142.07 g/mol

    Ref: 3D-FP77989

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  • 1-Bromopinacolone

    CAS:
    <p>1-Bromopinacolone is a synthetic analogue of the naturally occurring acetylcholine. It is used as a pharmaceutical preparation to treat psychotic disorders and inflammatory diseases, such as asthma. 1-Bromopinacolone has irreversible inhibition of the cholinergic receptor activity, which blocks the neurotransmitter signal from binding to its receptors. This drug also has an effect on the β-unsaturated ketones (PUFA), which are involved in syncytial virus infection. The molecular modelling of 1-bromopinacolone shows that it forms intramolecular hydrogen bonds with neighbouring nitrogen atoms and chlorine atoms, which stabilises its structure and leads to its high stability and low toxicity.</p>
    Formula:C6H11BrO
    Purity:Min. 95%
    Color and Shape:Colorless Clear Liquid
    Molecular weight:179.05 g/mol

    Ref: 3D-FB167518

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  • 2-Chlorobenzyl alcohol

    CAS:
    <p>2-Chlorobenzyl alcohol is a chemical compound that is used to synthesize other compounds. It is produced by the reaction of ethyl formate and hydrogen chloride in a reaction vessel. It reacts with benzoates to produce 2-chlorobenzoates, which are used as intermediates in the synthesis of pharmaceuticals. Hydroxyl groups can react with hydrogen fluoride to produce hydrofluoric acid, which is used as an industrial solvent. 2-Chlorobenzyl alcohol also reacts with hydroxide ions to produce ethylene glycol, which is used in making polyester fibers and plastics. This chemical compound has structural studies that show it has a proton and two hydroxyl groups that can react with hydrogen bond. Hydrogen bonds are important for the stability of DNA structures. The molecular structures of velvetleaf plants contain 2-chlorobenzyl alcohol, which may be due to its role in transferring oxygen from leaves to roots for respiration during</p>
    Formula:C7H7ClO
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:142.58 g/mol

    Ref: 3D-FC46928

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  • 4-Chloro-2-methylbenzoic acid

    CAS:
    <p>4-Chloro-2-methylbenzoic acid is a high quality chemical that is used as an intermediate in the preparation of other compounds. It belongs to the group of complex compounds and has CAS No. 7499-07-2. This reagent can be used to synthesize speciality chemicals, research chemicals, and versatile building blocks. 4-Chloro-2-methylbenzoic acid is also useful as a reaction component for the synthesis of fine chemicals, pharmaceuticals, and agrochemicals.</p>
    Formula:C8H7ClO2
    Purity:Min. 95%
    Molecular weight:170.59 g/mol

    Ref: 3D-FC55109

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  • Sodium monofluorophosphate

    CAS:
    <p>Sodium monofluorophosphate is a salt that contains sodium cations and fluorine anions. It is used as an agent in the production of dental fillings, toothpaste, and other products. Sodium monofluorophosphate has been shown to inhibit the activity of serine proteases such as trypsin by interfering with their catalytic activity and binding to their active site. This agent has also been shown to react with p-nitrophenyl phosphate to form a fluorescent product, which can be detected at low concentrations. Sodium monofluorophosphate has a thermal expansion coefficient that is only slightly larger than those of water and glycerol, which makes it ideal for use in the production of dental fillings.</p>
    Formula:FNa2O3P
    Purity:Min. 95%
    Color and Shape:White Powder
    Molecular weight:143.95 g/mol

    Ref: 3D-FS37902

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  • 2-Chloro-N-cyclohexyl-N-phenylpropanamide


    <p>Please enquire for more information about 2-Chloro-N-cyclohexyl-N-phenylpropanamide including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>
    Purity:Min. 95%

    Ref: 3D-FC169156

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  • 2-Chloro-N-(4-methoxyphenyl)propanamide

    CAS:
    <p>2-Chloro-N-(4-methoxyphenyl)propanamide (2CMPP) is an acetanilide with a chloro substituent. It is used in research and yields better results than 2-chlorobenzoyl chloride. Acetanilides are prepared by the catalytic reduction of nitrobenzenes or chlorobenzenes with sodium or potassium borohydride in the presence of water. The reaction is exothermic and produces a white solid, which can be purified by recrystallization or column chromatography. Preparative methods for acetanilides include reaction of phenols with acetic anhydride and formaldehyde, followed by hydrolysis of the resulting ester to yield the corresponding amide.</p>
    Formula:C10H12ClNO2
    Purity:Min. 95%
    Molecular weight:213.66 g/mol

    Ref: 3D-FC114008

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