Understanding the Properties and Applications of Ethanol, 2,2'-(ethylenedithio)di- (CAS 5244-34-8)
Ethanol, 2,2'-(ethylenedithio)di-, more commonly known by its CAS number 5244-34-8 and synonym 3,6-Dithia-1,8-octanediol, is a significant compound within the realm of fine chemicals. Its chemical formula, C6H14O2S2, indicates a structure rich in functional groups that lend themselves to diverse chemical transformations. This molecule, weighing approximately 182.308 grams per mole, is often encountered as a white, fine crystalline powder, signaling its purity and suitability for precise chemical applications.
The compound's physical properties are noteworthy for chemical engineers and researchers. With a reported density and a specific melting point range, its physical state is well-defined. Solubility data is also crucial; understanding its miscibility in various solvents aids in designing efficient reaction and purification processes. For anyone looking to buy 3,6-Dithia-1,8-octanediol, detailed specifications like solubility are key to ensuring it fits their specific chemical process requirements.
The preparation of this dithia compound typically involves reactions that are well-documented in chemical literature, often starting from readily available precursors. These synthesis routes are optimized to yield high purity, essential for its role as a chemical intermediate. The ability to reliably synthesize and supply this compound is a hallmark of reputable chemical manufacturers. NINGBO INNO PHARMCHEM CO.,LTD. focuses on these critical aspects, ensuring that our product line supports innovation in the fine chemical sector.
The applications for Ethanol, 2,2'-(ethylenedithio)di- are varied, extending into both industrial and research contexts. Its use as a building block allows for the creation of more complex sulfur-containing organic compounds, which are valuable in medicinal chemistry and material science. The consistent availability of this intermediate from trusted sources like NINGBO INNO PHARMCHEM CO.,LTD. empowers researchers and manufacturers to explore new avenues in product development, from advanced materials to specialized reagents.
Perspectives & Insights
Bio Analyst 88
“The preparation of this dithia compound typically involves reactions that are well-documented in chemical literature, often starting from readily available precursors.”
Nano Seeker Pro
“These synthesis routes are optimized to yield high purity, essential for its role as a chemical intermediate.”
Data Reader 7
“The ability to reliably synthesize and supply this compound is a hallmark of reputable chemical manufacturers.”