Bis(2,4,6-trimethylpyridine)iodine(I) hexafluorophosphate is widely utilized in research focused on:
- Catalysis: This compound serves as an effective catalyst in various organic reactions, enhancing reaction rates and yields, particularly in the synthesis of complex molecules.
- Electrochemistry: It is employed in electrochemical applications, such as in the development of sensors and batteries, due to its ability to facilitate electron transfer processes.
- Organic Synthesis: Researchers use it in the preparation of functionalized compounds, benefiting from its reactivity and selectivity in forming carbon-carbon and carbon-heteroatom bonds.
- Pharmaceutical Development: This chemical plays a role in the synthesis of pharmaceutical intermediates, aiding in the creation of new drugs with improved efficacy and safety profiles.
- Material Science: Its unique properties make it valuable in the development of advanced materials, such as polymers and nanomaterials, which can be tailored for specific applications.
General Information
Properties
Safety and Regulations
Applications
Bis(2,4,6-trimethylpyridine)iodine(I) hexafluorophosphate is widely utilized in research focused on:
- Catalysis: This compound serves as an effective catalyst in various organic reactions, enhancing reaction rates and yields, particularly in the synthesis of complex molecules.
- Electrochemistry: It is employed in electrochemical applications, such as in the development of sensors and batteries, due to its ability to facilitate electron transfer processes.
- Organic Synthesis: Researchers use it in the preparation of functionalized compounds, benefiting from its reactivity and selectivity in forming carbon-carbon and carbon-heteroatom bonds.
- Pharmaceutical Development: This chemical plays a role in the synthesis of pharmaceutical intermediates, aiding in the creation of new drugs with improved efficacy and safety profiles.
- Material Science: Its unique properties make it valuable in the development of advanced materials, such as polymers and nanomaterials, which can be tailored for specific applications.
Documents
Safety Data Sheets (SDS)
The SDS provides comprehensive safety information on handling, storage, and disposal of the product.
Product Specification (PS)
The PS provides a comprehensive breakdown of the product’s properties, including chemical composition, physical state, purity, and storage requirements. It also details acceptable quality ranges and the product's intended applications.
Certificates of Analysis (COA)
Search for Certificates of Analysis (COA) by entering the products Lot Number. Lot and Batch Numbers can be found on a product’s label following the words ‘Lot’ or ‘Batch’.
*Catalog Number
*Lot Number
Certificates Of Origin (COO)
This COO confirms the country where the product was manufactured, and also details the materials and components used in it and whether it is derived from natural, synthetic, or other specific sources. This certificate may be required for customs, trade, and regulatory compliance.
*Catalog Number
*Lot Number
Safety Data Sheets (SDS)
The SDS provides comprehensive safety information on handling, storage, and disposal of the product.
DownloadProduct Specification (PS)
The PS provides a comprehensive breakdown of the product’s properties, including chemical composition, physical state, purity, and storage requirements. It also details acceptable quality ranges and the product's intended applications.
DownloadCertificates of Analysis (COA)
Search for Certificates of Analysis (COA) by entering the products Lot Number. Lot and Batch Numbers can be found on a product’s label following the words ‘Lot’ or ‘Batch’.
*Catalog Number
*Lot Number
Certificates Of Origin (COO)
This COO confirms the country where the product was manufactured, and also details the materials and components used in it and whether it is derived from natural, synthetic, or other specific sources. This certificate may be required for customs, trade, and regulatory compliance.
