Nom du produit:N-{[3-(pyridin-4-yl)pyrazin-2-yl]methyl}-2,1,3-benzothiadiazole-4-sulfonamide
IUPAC Name:N-{[3-(pyridin-4-yl)pyrazin-2-yl]methyl}-2,1,3-benzothiadiazole-4-sulfonamide
- CAS:2097889-20-6
- Formule moléculaire:C16H12N6O2S2
- Pureté:95%+
- Numéro de catalogue:CM646885
- Poids moléculaire:384.43
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Pour une utilisation en R&D uniquement..
Détails du produit
- N° CAS:2097889-20-6
- Formule moléculaire:C16H12N6O2S2
- Point de fusion:-
- Code SMILES:O=S(=O)(NCC1=C(N=CC=N1)C1=CC=NC=C1)C1=CC=CC2=NSN=C12
- Densité:
- Numéro de catalogue:CM646885
- Poids moléculaire:384.43
- Point d'ébullition:
- N° Mdl:
- Stockage:
Category Infos
- Pyridines
- Pyridine is a six-membered heterocyclic compound containing one nitrogen heteroatom. Pyridine and piperidine are the most frequently occurring heterocyclic building blocks in drug molecules. According to incomplete statistics, there are currently more than 180 drugs containing pyridine or piperidine structure that have been marketed, nearly 1/5 of the drugs approved for marketing in recent years contain these two structures.
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- Pyridine is a basic heterocyclic organic compound with the chemical formula C5H5N. It is structurally related to benzene, with one methine group (=CH−) replaced by a nitrogen atom. It is a highly flammable, weakly alkaline, water-miscible liquid with a distinctive, unpleasant fish-like smell.
- Pyrazines
- Pyrazine is a heterocyclic aromatic organic compound with chemical formula C4H4N2. The marketed pyrazine drugs are mainly distributed in the field of anti-tumor and anti-infection. In recent years, there have been many new drugs in various fields, and there are some new target drugs worthy of attention.
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- Benzothiadiazoles
- The two N atoms in Benzothiadiazole could possibly form intermolecular hydrogen bonding, leading to a more planar backbone. Benzothiadiazole is a strong electron-accepting molecular fragment. By fusing it with thiazole donor-acceptor dyes, near-infrared fluorescence was created. The benzothiadiazole ring is a useful n-type building block for designing electron-transport materials for organic and polymer light-emitting diodes (LEDs). Arene- and heteroarene-fused thiadiazoles have also found use in the design of low-band-gap materials for the construction of organic field-effect transmitters (OFETs), as stable organic radicals, and as one or two photon-absorbing materials for the design of nonlinear near-infrared (NIR) dyes. Benzothiadiazoles acting as the electron-accepting cores have been incorporated into dendrimer-type light-harvesting materials.