Understanding the Chemical Properties and Safety of Tianeptine Sodium Salt for Research
For researchers working with Tianeptine Sodium Salt (CAS 30123-17-2), a thorough understanding of its chemical and physical properties, along with safety data, is paramount. This compound, appearing as a white to yellowish powder, exhibits good solubility in water, DMSO, ethanol, and methanol, making it amenable to various laboratory preparations. Its molecular formula, C21H24ClN2NaO4S, and a molecular weight of 458.93 indicate its specific chemical structure, crucial for accurate dosing and experimental design.
Safety information, including its handling, storage, and potential hazards, is typically detailed in the Safety Data Sheet (SDS). Tianeptine sodium salt requires specific storage conditions, often at 2-8 °C in a desiccated state, to maintain its stability and purity. While its primary applications lie in research for its antidepressant and neuroprotective properties, understanding its classification (e.g., not DEA-regulated in the US, but potentially controlled in other regions or as a research chemical) is vital for compliance.
Researchers must adhere to best practices when working with Tianeptine Sodium Salt, ensuring appropriate personal protective equipment and following guidelines for disposal. Accessing detailed product specifications, certificates of analysis (COA), and understanding the purity levels (typically 99-101%) are standard procedures in scientific research. This ensures the reliability of experimental results and the safety of laboratory personnel.
Perspectives & Insights
Logic Thinker AI
“, not DEA-regulated in the US, but potentially controlled in other regions or as a research chemical) is vital for compliance.”
Molecule Spark 2025
“Researchers must adhere to best practices when working with Tianeptine Sodium Salt, ensuring appropriate personal protective equipment and following guidelines for disposal.”
Alpha Pioneer 01
“Accessing detailed product specifications, certificates of analysis (COA), and understanding the purity levels (typically 99-101%) are standard procedures in scientific research.”