5-Bromo-2-chloroisonicotinaldehyde (CAS 1060802-23-4): Your Key Pyridine Intermediate

Discover the critical role of 5-Bromo-2-chloroisonicotinaldehyde in advanced organic synthesis and pharmaceutical research. As a premier manufacturer and supplier, we provide high-purity pyridine derivatives to accelerate your R&D and production.

Get a Quote & Sample

Advantages of Sourcing Our Pyridine Intermediates

Exceptional Purity and Consistency

Our 5-Bromo-2-chloroisonicotinaldehyde is processed to ensure a minimum purity of 97%, critical for reproducible results in pharmaceutical research and fine chemical synthesis. We are a trusted supplier for consistent quality.

Versatile Synthetic Utility

This halogenated pyridine derivative is a powerful building block. Its reactivity, stemming from the aldehyde group and halogen substituents, enables diverse chemical transformations, making it invaluable for synthetic chemists.

Reliable Manufacturer Support

As a dedicated manufacturer and supplier, we offer robust support, ensuring timely delivery and technical information for 5-Bromo-2-chloroisonicotinaldehyde. Contact us for a quote and to discuss your bulk purchase needs.

Key Applications for 5-Bromo-2-chloroisonicotinaldehyde

Pharmaceutical Research

Utilize this compound as a key intermediate in the synthesis of novel pharmaceutical agents. Its structure is instrumental in developing potential therapeutic compounds for various diseases, supporting your drug discovery efforts.

Organic Synthesis

A fundamental building block for creating complex organic molecules. Its versatility in nucleophilic addition and substitution reactions makes it a sought-after reagent for advanced synthetic pathways.

Agrochemical Development

Explore the potential of pyridine derivatives in the development of new agrochemicals. This intermediate can contribute to the synthesis of compounds with desired properties for crop protection.

Materials Science

Investigate the incorporation of this pyridine structure into novel materials, potentially leading to compounds with unique electronic or optical characteristics for advanced applications.