Название продукции:N-(2-{[3-(thiophen-2-yl)-1,2,4-oxadiazol-5-yl]methyl}phenyl)-4,5,6,7-tetrahydro-1,2-benzoxazole-3-carboxamide
IUPAC Name:N-(2-{[3-(thiophen-2-yl)-1,2,4-oxadiazol-5-yl]methyl}phenyl)-4,5,6,7-tetrahydro-1,2-benzoxazole-3-carboxamide
- CAS:1705818-78-5
- Молекулярная формула:C21H18N4O3S
- Чистота:95%+
- Номер в каталоге:CM939952
- Молекулярная масса:406.46
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Информация о продукции
- Номер CAS:1705818-78-5
- Молекулярная формула:C21H18N4O3S
- Точка плавления:-
- Smiles-код:O=C(NC1=C(CC2=NC(=NO2)C2=CC=CS2)C=CC=C1)C1=NOC2=C1CCCC2
- Плотность:
- Номер в каталоге:CM939952
- Молекулярная масса:406.46
- Точка кипения:
- Номер Mdl:
- Хранение:
Category Infos
- Thiophenes
- Thiophene is a five-membered heterocyclic compound containing a sulfur heteroatom with the molecular formula C4H4S. Thiophene is aromatic and is very similar to benzene; electrophilic substitution reaction is easier than benzene, and it is mainly substituted at the 2-position. Thiophene ring system has certain stability to oxidant.
- Oxadiazoles
- Oxadiazoles are a class of heterocyclic aromatic compounds with the molecular formula C2H2N2O, which have special biological activities and thermodynamic properties. Five-membered heterocyclic moieties composed of three or two heteroatoms are of great interest to researchers because these compounds show significant therapeutic potential. These heterocycles can serve as a building block for the development of novel molecular structures.
- Isoxazoles
- Isoxazole is a liquid heterocyclic compound C3H3NO isomeric with oxazole and having a penetrating odor like that of pyridine. Isoxazoles belong to an important class of five-membered aromatic heterocycles containing two electronegative heteroatoms, nitrogen and oxygen, in a 1,2-relationship and three regular sp2 carbon atoms. These molecules are found to be key components in various synthetic products in daily use and also present as a pharmacophore essential for biological activity in many drugs and bioactive natural products. In addition, isoxazoles have demonstrated their ability to exhibit hydrogen bond donor/acceptor interactions with a variety of enzymes and receptors.