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6681-15-8

Jatrorrhizine Chloride

Catalog#: AR006RP7  |   CAS#: 6681-15-8  |   MDL#: MFCD00238625  |   MF: C20H20ClNO4  |   MW: 373.8301

Packsize Purity Price Availability Quantity
10mg 98% $15.00 Global Stock Buy Now Add To Cart
50mg 98% $37.00 Global Stock Buy Now Add To Cart
100mg 98% $48.00 Global Stock Buy Now Add To Cart
250mg 98% $102.00 Global Stock Buy Now Add To Cart
1g 98% $375.00 Global Stock Buy Now Add To Cart
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Catalog Number AR006RP7
Chemical Name Jatrorrhizine Chloride
CAS Number 6681-15-8
Molecular Formula C20H20ClNO4
Molecular Weight 373.8301
MDL Number MFCD00238625
SMILES COc1cc2-c3cc4ccc(c(c4c[n+]3CCc2cc1O)OC)OC.[Cl-]

Jatrorrhizine chloride, a natural alkaloid compound derived from the roots of the plant coptis chinensis, serves a crucial role in chemical synthesis applications. Its unique structure and properties make it an invaluable tool for chemists in various research and industrial sectors.In organic chemistry, Jatrorrhizine chloride is often utilized as a key building block in the synthesis of more complex molecules. Its presence can facilitate the formation of new carbon-carbon or carbon-nitrogen bonds, leading to the creation of diverse chemical structures with desired properties. Chemists rely on the reactivity of Jatrorrhizine chloride to introduce specific functional groups and stereochemical features into target compounds, enabling the production of novel materials or pharmaceuticals.Furthermore, Jatrorrhizine chloride exhibits potent biological activities that make it a valuable component in drug discovery and development. Its pharmacological properties, such as antimicrobial, anti-inflammatory, and antioxidant effects, have attracted attention for potential therapeutic applications. By incorporating Jatrorrhizine chloride into synthetic pathways, researchers can access a wide range of bioactive compounds with promising medicinal properties.Overall, the versatile nature of Jatrorrhizine chloride in chemical synthesis offers researchers the opportunity to explore innovative synthetic routes and discover new molecules with significant implications in various fields of science and industry.
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