High-Purity 3-Piperazinobenzisothiazole Hydrochloride: Synthesis, Properties, and Applications
A key intermediate for advanced pharmaceutical research and development.
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3-Piperazinobenzisothiazole Hydrochloride
This compound is a critical building block in the synthesis of various pharmaceutical agents, most notably as a precursor for antipsychotic medications. Its high purity and well-defined chemical structure make it invaluable for research and development in drug discovery.
- Understand the crucial role of 3-Piperazinobenzisothiazole Hydrochloride synthesis in creating advanced drug molecules.
- Explore the chemical properties, including its molecular formula C11H14ClN3S and CAS number 87691-88-1, essential for precise research.
- Leverage this high-purity chemical intermediate for reliable outcomes in your pharmaceutical synthesis projects.
- Benefit from the stringent quality specifications, with an assay of ≥99.0%, ensuring consistency in your chemical reactions.
Key Advantages
High Purity Assurance
Ensuring research integrity, this intermediate boasts an assay of ≥99.0%, minimizing variable outcomes in your complex chemical synthesis.
Versatile Pharmaceutical Intermediate
As a key building block, it is essential for the development of novel therapeutic agents, including important antipsychotic drugs, demonstrating its significant role in medicinal chemistry.
Reliable Chemical Properties
With a defined molecular weight of 255.77 g/mol and stable physical properties, it offers predictable behavior in various reaction conditions, crucial for reproducible scientific results.
Key Applications
Antipsychotic Drug Manufacturing
This compound serves as a vital precursor in the synthesis of antipsychotic medications, contributing to the development of treatments for mental health conditions.
Pharmaceutical Research & Development
Its use is widespread in R&D laboratories for creating new chemical entities and exploring novel therapeutic pathways, supporting innovation in drug discovery.
Chemical Synthesis
As a specialized organic intermediate, it is employed in complex synthesis routes for various fine chemicals and advanced materials in the chemical industry.
Reference Standards
Often utilized as a reference standard in analytical chemistry for quality control and method development in pharmaceutical analysis, ensuring accuracy and compliance.
Related Technical Articles & Resources
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