Product Name:5-Chloro-2-phenylbenzo[d]thiazole

IUPAC Name:5-chloro-2-phenyl-1,3-benzothiazole

CAS:952-16-9
Molecular Formula:C13H8ClNS
Purity:97%
Catalog Number:CM530760
Molecular Weight:245.72

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CM530760-1g 1-2 Weeks ſdžȷ

For R&D use only.

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Product Details

CAS NO:952-16-9
Molecular Formula:C13H8ClNS
Melting Point:-
Smiles Code:ClC1=CC=C(SC(C2=CC=CC=C2)=N3)C3=C1
Density:
Catalog Number:CM530760
Molecular Weight:245.72
Boiling Point:
MDL No:MFCD08234962
Storage:

Category Infos

Benzothiazoles
Benzothiazoles are aromatic heterocyclic compounds with the chemical formula C7H5NS. Benzothiazoles and their derivatives are a very important class of heterocyclic compounds that are ubiquitous in nature and are mainly used in medicine, agriculture and industry. In medicine, benzothiazole derivatives are a kind of very important pharmaceutical intermediates with good pharmacological and biological activities. It can be used as a fungicide, anti-tuberculosis drug, anti-malarial, anti-convulsant, insecticide, sedative and anti-inflammatory drug, and can also be used to treat diabetes and has anti-cancer effects.

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Product Other Information

Product Overview 5-Chloro-2-phenyl-1,3-benzothiazole (5-Cl-2-Ph-1,3-BT) is an important chemical compound that has a variety of applications in scientific research. This compound has been widely studied and has been employed in a number of research fields, including medicine, pharmacology, and biochemistry.
Synthesis Method One of the most common methods is the reaction of 2-chlorobenzonitrile and 1,3-benzothiazole-2-thiol in the presence of a base. This reaction is typically carried out in an organic solvent at elevated temperatures. The reaction can also be catalyzed with an acid, such as hydrochloric acid. Another method that is commonly used to synthesize 5-Cl-2-Ph-1,3-BT is the reaction of 2-chlorophenol and 1,3-benzothiazole-2-thiol in the presence of a base. This reaction is typically carried out in an organic solvent at elevated temperatures.
Chemical Properties It has high reactivity and stability. Additionally, the compound is relatively inexpensive and easy to obtain. The main limitation of using 5-Cl-2-Ph-1,3-BT in laboratory experiments is that its mechanism of action is not fully understood.
Synthesis and Application It is used as a starting material in the synthesis of a variety of compounds, including drugs, agrochemicals, and polymers. It is also used as a catalyst in organic synthesis and as a reagent in the synthesis of a variety of heterocyclic compounds.
Future Directions Future directions for research on 5-Cl-2-Ph-1,3-BT include further investigation into its mechanism of action and biochemical and physiological effects. Additionally, research should be conducted on the use of 5-Cl-2-Ph-1,3-BT in the synthesis of a variety of compounds, including drugs, agrochemicals, and polymers. Finally, research should be conducted on the use of 5-Cl-2-Ph-1,3-BT in the development of new analytical techniques.