(E)-2-((3-Nitropyridin-2-yl)methylene)hydrazinecarbothioamide

95%

Reagent Code: #71625
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CAS Number 200933-26-2

science Other reagents with same CAS 200933-26-2

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 225.23 g/mol
Formula C₇H₇N₅O₂S
thermostat Physical Properties
Boiling Point 427.0±55.0°C
inventory_2 Storage & Handling
Storage 2-8°C

description Product Description

This chemical is primarily utilized in the field of medicinal chemistry and pharmaceutical research due to its potential biological activities. It is often investigated for its role as a precursor or intermediate in the synthesis of more complex molecules that exhibit therapeutic properties. Researchers explore its application in developing compounds with antimicrobial, anticancer, or anti-inflammatory effects. Its structure, featuring a hydrazinecarbothioamide moiety, makes it a valuable scaffold for designing inhibitors targeting specific enzymes or proteins involved in disease pathways. Additionally, it is studied in material science for its potential use in creating organic compounds with unique electronic or photophysical properties.

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Test Parameter Specification
Appearance Solid
Purity (%) 94.5-100
NMR Conforms to Structure

shopping_cart Available Sizes & Pricing

Size Availability Unit Price Quantity
inventory 50mg
10-20 days ฿684.00
inventory 250mg
10-20 days ฿2,052.00

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(E)-2-((3-Nitropyridin-2-yl)methylene)hydrazinecarbothioamide
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This chemical is primarily utilized in the field of medicinal chemistry and pharmaceutical research due to its potential biological activities. It is often investigated for its role as a precursor or intermediate in the synthesis of more complex molecules that exhibit therapeutic properties. Researchers explore its application in developing compounds with antimicrobial, anticancer, or anti-inflammatory effects. Its structure, featuring a hydrazinecarbothioamide moiety, makes it a valuable scaffold for designing inhibitors targeting specific enzymes or proteins involved in disease pathways. Additionally, it is studied in material science for its potential use in creating organic compounds with unique electronic or photophysical properties.
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