Finally 7-bromo-4-chloro-1-benzofuran + Free Bonus [r2XGvKgM]
7-Bromo-4-Chloro-1-Benzofuran: A High-Quality CompoundIntroducing the 7-Bromo-4-Chloro-1-Benzofuran, a premium chemical compound with exceptional purity and stability. This compound boasts a unique molecular structure, featuring a benzofuran ring wit
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Finally 7-bromo-4-chloro-1-benzofuran + Free Bonus [r2XGvKgM]
7-Bromo-4-Chloro-1-Benzofuran: A High-Quality Compound
Introducing the 7-Bromo-4-Chloro-1-Benzofuran, a premium chemical compound with exceptional purity and stability. This compound boasts a unique molecular structure, featuring a benzofuran ring with a bromine and chlorine substituent at positions 7 and 4, respectively. The 7-Bromo-4-Chloro-1-Benzofuran is a versatile intermediate for organic synthesis, ideal for research and development in various industries, including pharmaceuticals, agrochemicals, and materials science.- High Purity: Our 7-Bromo-4-Chloro-1-Benzofuran is available with a minimum purity of 98%, ensuring consistent and reliable results in your experiments.
- Quality Assured: Each batch is thoroughly tested for quality and consistency, adhering to strict quality control standards.
Key Properties and Specifications
The 7-Bromo-4-Chloro-1-Benzofuran is a white to off-white crystalline solid with a molecular formula of C8H4BrClO and a molecular weight of 231.47. It is odorless and has a melting point of approximately 120-121°C. This compound is soluble in common organic solvents such as dichloromethane, ethyl acetate, and acetone. The CAS RN for this compound is 325486-41-7, and its SMILES notation is C1=CC(=C2C(=C1Cl)C=CO2)Br.- Storage: Store in an inert atmosphere at room temperature to maintain its stability and prevent degradation.
- Cas No.: 325486-41-7, ensuring traceability and regulatory compliance.
Applications and Benefits
The 7-Bromo-4-Chloro-1-Benzofuran is an essential building block for the synthesis of various pharmaceuticals, agrochemicals, and advanced materials. Its unique structural features make it suitable for developing novel compounds with improved biological activity, efficiency, and selectivity. Some of the practical applications of this compound include:- Pharmaceuticals: Designing new drugs for treating various diseases, such as cancer, inflammation, and cardiovascular disorders.
- Agrochemicals: Developing herbicides, insecticides, and fungicides with enhanced efficacy and reduced environmental impact.
- Materials Science: Producing advanced materials with improved properties, such as high thermal stability, conductivity, and durability.
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