99% 2,3-Difluorobromobenzene CAS 38573-88-9 C₆H₃BrF₂, for Pharmaceutical Intermediates, Pesticide Intermediates, Fine Chemicals, and Fluorinated Material Applications
1. Product Basic Information Product Name: 2,3-Difluorobromobenzene English Name: 2,3-Difluorobromobenzene Purity: ≥99% CAS No.: 38573-88-9 Chemical Formula: C₆H₃BrF₂ Product Category: Organic Fluorinated Aromatic Intermediate, Halogenated Aromatic Compound, Pharmaceutical and Agrochemical Synthesis ...
1. Product Basic Information
Product Name: 2,3-Difluorobromobenzene
English Name: 2,3-Difluorobromobenzene
Purity: ≥99%
CAS No.: 38573-88-9
Chemical Formula: C₆H₃BrF₂
Product Category: Organic Fluorinated Aromatic Intermediate, Halogenated Aromatic Compound, Pharmaceutical and Agrochemical Synthesis Raw Material
2,3-Difluorobromobenzene is an important fluorinated aromatic halogenated compound containing a bromine group and two fluorine substituents. It offers favorable reactivity and can be used to prepare various fine chemicals through coupling, substitution, and functional group transformation reactions.
2. Product Quality Reference
Reference quality requirements for high-purity grade 2,3-Difluorobromobenzene:
Appearance: Colorless to Light Yellow Liquid
Purity (GC): ≥99%
Moisture Content: Controlled According to Customer Application Grade
Single Impurity: Controlled According to Pharmaceutical, Agrochemical, and Material Application Requirements
Specific batch quality specifications are subject to the actual COA test report.
3. Product Grades and Application Classifications
① Industrial Grade 2,3-Difluorobromobenzene (≥98%)
Main Applications:
-General organic fluorinated synthesis raw materials;
-Halogenated aromatic compound production;
-Fine chemical route development.
Primary Customers: Fine chemical enterprises, organic synthesis companies.
② High-Purity Grade 2,3-Difluorobromobenzene (≥99%)
Main Applications:
-Fluorinated pharmaceutical intermediate synthesis;
-Fluorinated pesticide intermediate development;
-High-end organic fluorinated chemical research and development.
Primary Customers: Pharmaceutical companies, agrochemical enterprises, fluorochemical companies.
③ Research Grade / Functional Materials Grade 2,3-Difluorobromobenzene
Main Applications:
-Fluorinated functional molecule research;
-Electronic material intermediate development;
-Novel fluorinated material research and development.
Primary Customers: Research institutions, university laboratories, new materials companies.
4. Main Application Areas in the Russian Market
① Pharmaceutical Intermediate Production
Specific Application: Serves as a fluorinated aromatic building block for constructing fluorinated fragments in drug molecules, enhancing molecular stability and biological activity.
Downstream Customers: Pharmaceutical enterprises, API manufacturers, pharmaceutical intermediate manufacturers.
② Pesticide Intermediate Production
Specific Application: Used in the design and synthesis of fluorinated pesticide molecules, serving as an important intermediate for herbicides, insecticides, and plant protection products.
Downstream Customers: Agrochemical enterprises, fine chemical companies.
③ Fine Chemical Synthesis
Specific Application: Utilizes the bromine group for coupling reactions to prepare other fluorinated aromatic compounds.
Downstream Customers: Organic fluorinated material companies, fine chemical manufacturers.
④ Fluorinated Material Research & Development
Specific Application: Used in the development of fluorinated functional molecules, specialty material intermediates, and functional chemicals.
Downstream Customers: New materials companies, research and development institutions.
⑤ Research Applications
Specific Application: Serves as an organic synthesis building block for new reaction development and fluorinated compound screening studies.
Downstream Customers: Universities, research laboratories.
5. Russian Market Procurement Considerations
① Purity Grade: Pharmaceutical, agrochemical, and high-end synthesis customers typically focus on purity of 99% and above.
② Moisture and Impurity Control: Affects subsequent reaction efficiency and product quality.
③ Isomer Control: Affects synthesis selectivity.
④ Batch-to-Batch Consistency: Fine chemical customers focus on stable long-term supply.