Produktname:N-(2,1,3-benzothiadiazol-4-yl)-2-(pyrazin-2-yl)-1,3-thiazole-4-carboxamide
IUPAC Name:N-(2,1,3-benzothiadiazol-4-yl)-2-(pyrazin-2-yl)-1,3-thiazole-4-carboxamide
- CAS:1235048-27-7
- Molekulare Formel:C14H8N6OS2
- Reinheit:95%+
- Katalognummer:CM940036
- Molekulargewicht:340.38
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Produkt-Details
- CAS-Nr.:1235048-27-7
- Molekulare Formel:C14H8N6OS2
- Schmelzpunkt:-
- SMILES-Code:O=C(NC1=CC=CC2=NSN=C12)C1=CSC(=N1)C1=CN=CC=N1
- Dichte:
- Katalognummer:CM940036
- Molekulargewicht:340.38
- Siedepunkt:
- Mdl-Nr.:
- Lagerung:
Category Infos
- Thiazoles
- Thiazoles are very important functional groups in medicinal chemistry. They act as ligands on a variety of biological matrices. Thiazoles are used in a wide range of therapeutic applications, such as antibacterial, antiretroviral, antifungal, antiallergic, antihypertensive, pain treatment, and to control symptoms of schizophrenia.
- 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.