Building Blocks
Cette section contient des produits fondamentaux pour la synthèse de composés organiques et biologiques. Building blocks sont les matériaux de départ essentiels utilisés pour construire des molécules complexes à travers diverses réactions chimiques. Ils jouent un rôle crucial dans la découverte de médicaments, la science des matériaux et la recherche chimique. Chez CymitQuimica, nous offrons une gamme diversifiée de building blocks de haute qualité pour soutenir vos recherches innovantes et projets industriels, en vous assurant de disposer des composants essentiels pour une synthèse réussie.
Sous-catégories appartenant à la catégorie "Building Blocks"
- Acides boroniques et dérivés de l'acide boronique(5.756 produits)
- Building Blocks Chiraux(1.242 produits)
- Building Blocks Hydrocarbonés(6.095 produits)
- Building Blocks organiques(61.038 produits)
196817 produits trouvés pour "Building Blocks"
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Cis-2-ethynylcyclopentanol
CAS :<p>Versatile small molecule scaffold</p>Formule :C7H10ODegré de pureté :Min. 95%Masse moléculaire :110.15 g/mol2-Amino-1-(5-bromopyridin-3-yl)ethan-1-one dihydrochloride
CAS :<p>Versatile small molecule scaffold</p>Formule :C7H9BrCl2N2ODegré de pureté :Min. 95%Masse moléculaire :287.97 g/mol(5-Fluoro-2,3-dihydro-1-benzofuran-2-yl)methanol
CAS :<p>Versatile small molecule scaffold</p>Formule :C9H9FO2Degré de pureté :Min. 95%Masse moléculaire :168.16 g/mol(4-Cyclopropyl-4H-1,2,4-triazol-3-yl)methanol
CAS :<p>Versatile small molecule scaffold</p>Formule :C6H9N3ODegré de pureté :Min. 95%Masse moléculaire :139.16 g/molN,N-Dimethyl-2-(2-piperidinyl)-1-ethanaminedihydrochloride
CAS :<p>Versatile small molecule scaffold</p>Formule :C9H22Cl2N2Degré de pureté :Min. 95%Masse moléculaire :229.2 g/mol3-Amino-1-(4-fluorophenyl)pyrrolidin-2-one
CAS :<p>Versatile small molecule scaffold</p>Formule :C10H11FN2ODegré de pureté :Min. 95%Masse moléculaire :194.21 g/mol3-{[3-(Trifluoromethyl)-1H-pyrazol-1-yl]methyl}benzoic acid
CAS :<p>Versatile small molecule scaffold</p>Formule :C12H9F3N2O2Degré de pureté :Min. 95%Masse moléculaire :270.21 g/molRef: 3D-EQB64362
Produit arrêté6-Acetyl-1-methyl-1H-indazole
CAS :<p>Versatile small molecule scaffold</p>Formule :C10H10N2ODegré de pureté :Min. 95%Masse moléculaire :174.2 g/molRef: 3D-JWB51125
Produit arrêté1-Methyl-4,5,6,7-tetrahydro-1H-indazol-4-ol
CAS :<p>Versatile small molecule scaffold</p>Formule :C8H12N2ODegré de pureté :Min. 95%Masse moléculaire :152.19 g/mol5-Methoxy-4H-chromen-3-one
CAS :<p>5-Methoxy-4H-chromen-3-one is an organic compound that belongs to the group of organocopper compounds. It has been extracted from plants and animals, such as leaves and fruit. This chemical can be used in the production of ethyl esters, which are a type of organic compound. 5-Methoxy-4H-chromen-3-one can also be used in the synthesis of trackable acid ethyl esters, which are used in the detection and identification of drugs.</p>Formule :C10H10O3Degré de pureté :Min. 95%Masse moléculaire :178.18 g/mol2-{[(tert-Butoxy)carbonyl]amino}-3-(thiophen-3-yl)propanoic acid
CAS :<p>Versatile small molecule scaffold</p>Formule :C12H17NO4SDegré de pureté :Min. 95%Masse moléculaire :271.33 g/molRef: 3D-JEA00759
Produit arrêté8-Chloro-5-methoxy-1,2,3,4-tetrahydronaphthalen-1-one
CAS :<p>Versatile small molecule scaffold</p>Formule :C11H11ClO2Degré de pureté :Min. 95%Masse moléculaire :210.65 g/molDicyclohexylmethanol
CAS :<p>Dicyclohexylmethanol is a trifunctional compound that contains a hydroxyl group, and can be used as a hydrogen bond donor or acceptor. The chemical structure of dicyclohexylmethanol can be seen in the figure below. Dicyclohexylmethanol has been used for sample preparation for hydrogen chloride gas. It has also been used to determine the concentration of blood ethanol levels and to measure blood pH in humans. Dicyclohexylmethanol is an important reactant in asymmetric synthesis reactions due to its ability to form hydrogen bonds with both reactants.</p>Formule :C13H24ODegré de pureté :Min. 95%Masse moléculaire :196.33 g/molRef: 3D-EAA45382
Produit arrêté2-Bromo-3,3,3-trifluoro-1-propene
CAS :Produit contrôlé<p>2-Bromo-3,3,3-trifluoro-1-propene is a chemical compound that has been synthesized in an asymmetric reaction. The reactant is bromopropane and the product is 2,2,2-trifluoropropene. The methylene group on the propene molecule is activated by the nucleophilic attack of a fluoride ion from hydrogen fluoride to form a cavity with a highly strained bond. The kinetic study of this reaction revealed that the activation energy for the reaction is 42 kJ/mol. Palladium-catalyzed coupling reactions are catalyzed by palladium and require nonpolar solvents such as toluene or dichloromethane. This type of reaction has been shown to be exothermic with an isolated yield of 1%.</p>Formule :C3H2BrF3Degré de pureté :Min. 95%Couleur et forme :Colorless PowderMasse moléculaire :174.95 g/molRef: 3D-FB11073
Produit arrêté2-Oxa-spiro[3.3]heptan-6-ol
CAS :<p>Versatile small molecule scaffold</p>Formule :C6H10O2Degré de pureté :Min. 95%Masse moléculaire :114.14 g/molRef: 3D-NEC38108
Produit arrêté2-Cyano-5-fluorophenol
CAS :<p>2-Cyano-5-fluorophenol is an organic compound that is used as a precursor to medicines and other chemicals. It reacts with calcium hydroxide in water to form 2-cyano-5-hydroxyfluorobenzene, which can be hydrolyzed to form 2-cyano-5-chlorofluorobenzene. This compound can also react with sodium hydroxide to produce sodium cyanate, which can be hydrolyzed to form sodium chloride and hydrogen cyanide gas. The alkali metal ions are needed for this reaction, which is why the product should not be exposed to water or moisture. 2-Cyano-5-fluorophenol has been shown to have liquid crystal properties and is used in the production of certain types of polymers. 2Cyano-5Fluorophenol crystals are also used in some medicines such as acetaminophen (paracetamol).</p>Formule :C7H4FNODegré de pureté :Min. 95%Masse moléculaire :137.11 g/molRef: 3D-LHA59001
Produit arrêtéTri-b-GalNAc-PEG5-NHS ester
CAS :<p>Tri-GalNAc-NHS ester is a multivalent molecule composed of three GalNAc cluster arms. It is a protein degrader and a ligand of the asialoglycoprotein receptor (ASGPR) used for the development of targeted therapies for liver diseases. The GalNAc arms enable high-affinity binding to the ASGPR on hepatocyte surfaces. The crucial functional group, N-hydroxysuccinimide (NHS) ester, is known for its ease of conjugation with various biomolecules possessing amine (NH2) groups. This biocompatible reaction strategy allows the design and development of targeted conjugates such as drug-GalNAc conjugates, siRNA delivery vehicles, or probes for ASGPR imaging in the liver.</p>Formule :C79H137N11O37Degré de pureté :Min. 95%Couleur et forme :PowderMasse moléculaire :1,832.99 g/mol
