High-Purity 2-Bromo-4-chlorobenzaldehyde: Your Reliable Pharmaceutical Intermediate Supplier

Discover the indispensable role of 2-Bromo-4-chlorobenzaldehyde (CAS: 84459-33-6) in advanced organic synthesis. As a premier manufacturer and supplier in China, we offer high-purity intermediates essential for your pharmaceutical and fine chemical production needs.

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Key Advantages of Partnering with Our 2-Bromo-4-chlorobenzaldehyde Supplier

Exceptional Purity and Consistency

Our 2-Bromo-4-chlorobenzaldehyde consistently meets stringent purity standards (≥97.0%), ensuring predictable reaction outcomes and minimizing side products in your complex organic synthesis. This focus on quality is crucial for pharmaceutical intermediates.

Versatile Chemical Reactivity

The unique structure of this halogenated benzaldehyde makes it an excellent intermediate for nucleophilic substitution and cross-coupling reactions, enabling the efficient synthesis of pharmaceuticals, agrochemicals, and fine chemicals.

Reliable Supply Chain and Scalability

As a dedicated manufacturer in China, we guarantee a consistent and scalable supply of 2-Bromo-4-chlorobenzaldehyde. You can rely on us to meet your production demands, whether for laboratory research or large-scale industrial manufacturing.

Applications of 2-Bromo-4-chlorobenzaldehyde in Chemical Industries

Pharmaceutical Synthesis

This compound is a critical building block for synthesizing active pharmaceutical ingredients (APIs) and complex drug molecules, accelerating drug discovery and development processes.

Agrochemical Development

It serves as a key intermediate in the creation of advanced agrochemicals, contributing to improved crop protection and yield enhancement strategies.

Fine Chemical Manufacturing

Its versatile reactivity makes it invaluable in the production of a wide array of fine chemicals, enabling the creation of specialized compounds for various industrial applications.

Organic Chemistry Research

Researchers utilize 2-Bromo-4-chlorobenzaldehyde for its predictable reactivity in exploring new synthetic pathways and developing novel organic molecules.