1-Chloro-2-fluoro-3-isocyanatobenzene: Your Premier Organic Intermediate Supplier

Discover the essential properties and wide-ranging applications of 1-Chloro-2-fluoro-3-isocyanatobenzene, a critical building block for advanced chemical synthesis. Source high-purity organic intermediates from a trusted manufacturer in China.

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Advantages of Sourcing 1-Chloro-2-fluoro-3-isocyanatobenzene

Superior Purity for Critical Applications

Our commitment to quality ensures that this CAS 69922-25-4 organic intermediate meets stringent purity standards (≥98.0%), minimizing impurities and guaranteeing consistent performance in your sensitive synthesis processes.

Versatile Chemical Synthesis Applications

The unique combination of chlorine, fluorine, and an isocyanate group makes this compound highly versatile. It serves as a crucial intermediate for companies developing novel pharmaceuticals and advanced agrochemical products.

Reliable Supply Chain and Competitive Pricing

As a prominent manufacturer in China, we offer competitive prices and a dependable supply chain for 1-Chloro-2-fluoro-3-isocyanatobenzene, ensuring your production schedules are met without interruption.

Key Application Areas for 1-Chloro-2-fluoro-3-isocyanatobenzene

Pharmaceutical Synthesis

Critical for the development of Active Pharmaceutical Ingredients (APIs), this organic intermediate facilitates precise chemical modifications needed in drug discovery and manufacturing.

Agrochemical Development

Its reactivity makes it valuable in creating new pesticides and herbicides, contributing to enhanced crop protection and agricultural productivity. Purchase this intermediate for your agrochemical formulation needs.

Fine Chemical Manufacturing

As a versatile fine chemical intermediate, it is instrumental in the synthesis of a wide array of complex organic molecules for various industrial sectors.

Research and Development

Academic and industrial researchers rely on this compound for its specific chemical properties, enabling exploration of new synthetic pathways and materials.