99% 2,3-Difluoroanisole CAS 13472-84-9 C₇H₆F₂O, for Pharmaceutical Intermediates, Pesticide Intermediates, Fine Chemicals, and Fluorinated Material Applications
1. Product Basic Information Product Name: 2,3-Difluoroanisole English Name: 2,3-Difluoroanisole Purity: ≥99% CAS No.: 13472-84-9 Chemical Formula: C₇H₆F₂O Product Category: Organic Fluorinated Aromatic Intermediate, Pharmaceutical and Agrochemical Intermediate, Fine Chemical Raw Material 2,3...
1. Product Basic Information
Product Name: 2,3-Difluoroanisole
English Name: 2,3-Difluoroanisole
Purity: ≥99%
CAS No.: 13472-84-9
Chemical Formula: C₇H₆F₂O
Product Category: Organic Fluorinated Aromatic Intermediate, Pharmaceutical and Agrochemical Intermediate, Fine Chemical Raw Material
2,3-Difluoroanisole is an important fluorinated aromatic compound featuring a methoxy group and two fluorine substituents. It serves as a key intermediate in the synthesis of aromatic fluorinated compounds for applications in pharmaceuticals, pesticides, and functional materials.
2. Product Quality Reference
Reference quality requirements for high-purity grade 2,3-Difluoroanisole:
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-Difluoroanisole (≥98%)
Main Applications:
-General organic fluorinated synthesis raw materials;
-Aromatic fluoride production;
-Fine chemical route development.
Primary Customers: Fine chemical enterprises, organic synthesis companies.
② High-Purity Grade 2,3-Difluoroanisole (≥99%)
Main Applications:
-Pharmaceutical fluorinated intermediate synthesis;
-Pesticide active molecule development;
-High-end fluorinated chemical research and development.
Primary Customers: Pharmaceutical companies, agrochemical enterprises, fluorochemical companies.
③ Research Grade / Functional Materials Grade 2,3-Difluoroanisole
Main Applications:
-Fluorinated functional molecule research;
-Electronic chemicals and material intermediate development;
-Research organic synthesis applications.
Primary Customers: Universities, research institutions, 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 the synthesis of pharmaceutical intermediates. The fluorine substituents can improve the stability and biological activity of target molecules.
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 aromatic intermediate for herbicides, insecticides, and plant protection products.
Downstream Customers: Agrochemical enterprises, fine chemical companies.
③ Fine Chemical Synthesis
Specific Application: The methoxy and fluorine substituent structures enable further halogenation, coupling, substitution, and other reactions to prepare other fluorinated aromatic compounds.
Downstream Customers: Organic fluorinated material companies, fine chemical manufacturers.
④ Electronic Chemicals and Functional Materials Research & Development
Specific Application: Used in the development of specialty fluorinated molecules, functional solvents, and novel material intermediates.
Downstream Customers: Electronic materials companies, new materials companies, research and development institutions.
⑤ Research Applications
Specific Application: Serves as an organic synthesis building block for reaction route studies and the development of novel fluorinated compounds.
Downstream Customers: University laboratories, research units.
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.
⑤ Completeness of COA, TDS, SDS, and Export Documentation.