1-Chloropinacolone: A Key Intermediate for Advanced Chemical Synthesis
Discover the versatility of 1-Chloropinacolone (CAS 13547-70-1) as a crucial component in pharmaceutical and agrochemical production.
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1-Chloropinacolone
1-Chloropinacolone is a vital chemical intermediate, extensively utilized in the synthesis of various organic compounds. Its primary applications lie in the pharmaceutical sector for the development of medicines and in the agrochemical industry for the production of pesticides. Notably, it serves as a precursor for triazole compounds, which exhibit significant biological activities, including antiviral, antibacterial, antifungal, and antituberculous properties. This makes 1-Chloropinacolone an indispensable material for research and development processes and large-scale chemical manufacturing.
- Leveraging 1-Chloropinacolone intermediate for medicines, researchers and manufacturers can develop advanced therapeutic agents for a range of health conditions.
- The synthesis of triazole compounds is greatly facilitated by 1-Chloropinacolone, enabling the creation of compounds with potent biological activities.
- Understanding the CAS 13547-70-1 chemical properties is crucial for optimizing its use in complex synthesis pathways.
- 1-Chloropinacolone's role in pharmaceutical intermediates for drug development underscores its importance in the global healthcare supply chain.
Product Advantages
Versatile Intermediate
As a key component in organic synthesis, 1-Chloropinacolone offers broad applicability in creating complex molecular structures for both pharmaceutical and agrochemical sectors.
Biological Activity Precursor
Its use in the synthesis of triazole compounds leads to products with significant antiviral, antibacterial, and antifungal properties, addressing critical needs in public health and agriculture.
Research & Development Enabler
The availability of high-purity 1-Chloropinacolone supports advanced chemical R&D intermediates, driving innovation in new drug discovery and crop protection solutions.
Key Applications
Pharmaceutical Synthesis
Essential for the development of new drugs, leveraging its properties in the pharmaceutical intermediates for drug development.
Agrochemical Production
Used as a critical component in creating effective pesticides, contributing to the field of agrochemicals.
Organic Synthesis
A foundational building block in diverse organic synthesis pathways, allowing for the creation of a wide array of chemical compounds.
Specialty Chemical Manufacturing
Supports the production of specialty chemicals that require specific molecular structures and functionalities.