6-Iodo-1-Hexanol (CAS 40145-10-6): A Key Intermediate for Advanced Organic Synthesis

Discover the multifaceted utility of 6-Iodo-1-Hexanol (CAS 40145-10-6) as a crucial building block in modern organic synthesis, empowering innovations in pharmaceuticals and agrochemicals. As a leading manufacturer and supplier, we provide high-purity materials essential for your research and development needs.

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Advantages of Sourcing 6-Iodo-1-Hexanol

Exceptional Reactivity Profile

The terminal iodine atom acts as an excellent leaving group, facilitating various nucleophilic substitution reactions, while the hydroxyl group can undergo esterification or etherification, providing chemists with immense synthetic flexibility when using this key intermediate.

Broad Application Spectrum

From crafting novel pharmaceutical drug candidates to developing advanced agrochemicals, 6-Iodo-1-Hexanol serves as a vital precursor, enabling the synthesis of complex molecules with specific biological activities, making it a crucial component for R&D efforts.

Quality Assurance and Stability

As a dedicated manufacturer and supplier, we guarantee consistent quality and purity, crucial for reproducible results in sensitive organic synthesis. Our commitment ensures you receive a reliable product every time you purchase.

Core Applications of 6-Iodo-1-Hexanol

Pharmaceutical Synthesis

Used as a building block for synthesizing active pharmaceutical ingredients (APIs) and advanced intermediates in drug discovery, contributing to the development of new therapeutic agents.

Agrochemical Intermediates

A vital component in the creation of novel pesticides, herbicides, and plant growth regulators, enhancing crop protection and agricultural productivity.

Organic Synthesis

Serves as a versatile reagent for various organic transformations, including alkylation, Grignard reactions, and the synthesis of ethers, esters, and other functionalized organic molecules.

Materials Science Research

Investigated for its potential use in the development of new polymers and functional materials due to its inherent chemical structure and reactivity.