3,6-Dithia-1,8-octanediol: A Versatile Fine Chemical Intermediate
Discover the properties, applications, and synthesis of this crucial building block in advanced chemical manufacturing.
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3,6-Dithia-1,8-octanediol
3,6-Dithia-1,8-octanediol, identified by CAS number 5244-34-8, is a high-purity fine chemical recognized for its critical role as a building block in various chemical synthesis pathways. With a molecular formula of C6H14O2S2, it is a valuable intermediate for creating more complex organic molecules.
- Explore the diverse applications of 3,6-Dithia-1,8-octanediol in cosmetic formulations and pharmaceutical material production.
- Understand the chemical synthesis routes, including preparation from 2-chloroethanol and ethane-1,2-dithiol, to ensure high-quality product sourcing.
- Leverage the unique properties of this compound, essential for developing specialized chemicals and advancing organic synthesis.
- Source reliable 3,6-Dithia-1,8-octanediol for your research and development needs, ensuring consistency and purity for optimal results.
Key Advantages
High Purity and Quality
Ensuring 98% purity, this chemical intermediate provides reliability for demanding applications in advanced chemical manufacturing.
Versatile Building Block
Its structure makes it an ideal starting material for complex organic synthesis, contributing to the development of novel compounds.
Broad Application Potential
Widely utilized in the cosmetics and medicine sectors, demonstrating its value across different industries for various chemical applications.
Key Applications
Cosmetic Formulations
Investigate the use of 3,6-Dithia-1,8-octanediol as a component in cosmetic products, contributing to their formulation and efficacy.
Pharmaceutical Intermediates
This chemical serves as a crucial intermediate in the synthesis of active pharmaceutical ingredients, supporting drug development.
Organic Synthesis
Its reactive functional groups make it a versatile reagent for complex organic synthesis projects and research.
Specialty Chemicals
Explore its role in creating specialty chemicals with unique properties for various industrial applications.
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