7-Bromo-3-methoxyquinoline


Chemical Name: 7-Bromo-3-methoxyquinoline
CAS Number: 1246548-95-7
Product Number: AG000MJI(AGN-PC-0WD1GG)
Synonyms:
MDL No: MFCD18253949
Molecular Formula: C10H8BrNO
Molecular Weight: 238.0806

Identification/Properties


Safety Information


GHS Pictogram:
N/A
Signal Word:
UN#:
-
Hazard Statements:
-
Precautionary Statements:
Class:
-
Packing Group:
-

NMR Spectrum


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Chemical Structure



7-Bromo-3-methoxyquinoline is a versatile compound widely used in chemical synthesis for its unique properties and reactivity. This organic compound serves as a valuable building block in the preparation of various pharmaceuticals, agrochemicals, and functional materials. Its ability to undergo various chemical reactions, such as nucleophilic substitution and coupling reactions, makes it a key intermediate in the synthesis of complex organic molecules.In pharmaceutical research, 7-Bromo-3-methoxyquinoline is employed in the development of novel drug candidates due to its potential biological activities. Its structural features allow for modifications to be made at different positions, leading to the synthesis of structurally diverse compounds with desired pharmacological properties. Additionally, this compound can act as a ligand in metal-catalyzed reactions, enabling the formation of new carbon-carbon and carbon-heteroatom bonds in the synthesis of fine chemicals and natural products.Furthermore, 7-Bromo-3-methoxyquinoline finds applications in the field of materials science, where it is utilized in the production of organic light-emitting diodes (OLEDs), dyes, and polymers. Its electron-rich nature and aromaticity contribute to its performance in optoelectronic devices and as a fluorescent marker in biological imaging studies. By incorporating this compound into the molecular design of materials, researchers can tune their properties for specific applications, such as organic semiconductors and sensors.Overall, the strategic use of 7-Bromo-3-methoxyquinoline in chemical synthesis demonstrates its significance in shaping advancements in drug discovery, materials design, and organic chemistry research. Its versatile reactivity and functional diversity make it a valuable tool for scientists seeking to create innovative and impactful chemical compounds for a range of scientific and industrial applications.