The Chemical Profile and Research Applications of Diphenidol (CAS 972-02-1)
NINGBO INNO PHARMCHEM CO.,LTD. is pleased to offer a detailed examination of Diphenidol (CAS 972-02-1), a compound with a distinct chemical profile and wide-ranging research applications. This article focuses on the physicochemical properties of Diphenidol, its common synonyms, and its utility in various scientific disciplines, particularly in pharmaceutical development and chemical synthesis. The meticulous study of such compounds is fundamental to advancing medical and chemical sciences.
Diphenidol, chemically known as 1,1-diphenyl-4-(piperidin-1-yl)butan-1-ol, is characterized by its molecular formula C21H27NO and a molecular weight of approximately 309.45 g/mol. It is typically supplied as a solid powder, often described as red or white, depending on its purity and specific form. Understanding the Diphenidol CAS 972-02-1 synthesis is key to appreciating its availability and quality for research. The synthetic routes employed ensure the compound meets the stringent requirements for use in pharmacological and chemical investigations. For those seeking to source this material, identifying a reliable supplier to buy Diphenidol powder is a critical first step.
The versatility of Diphenidol extends to its multiple applications. Its well-documented role as an antiemetic and antivertigo agent makes it a focal point for research into gastrointestinal and neurological disorders. The detailed understanding of the Diphenidol mechanism of action, particularly its interaction with muscarinic receptors, provides a foundation for developing novel therapeutics. Furthermore, its chemical structure lends itself to being a precursor or reference compound in complex organic synthesis projects, contributing to the broader field of chemical research.
When considering Diphenidol for research, it's important to be aware of its pharmacological profile, including known Diphenidol side effects. These might include central nervous system effects like drowsiness or dizziness, which are typical of anticholinergic compounds. Researchers must account for these factors in experimental design and data interpretation. The pursuit of improved Diphenidol antiemetic properties continues to drive research, seeking to enhance efficacy while minimizing adverse effects.
In conclusion, Diphenidol (CAS 972-02-1) is a compound of significant interest in both pharmaceutical and chemical research. Its distinct chemical properties and established therapeutic applications underscore its importance. NINGBO INNO PHARMCHEM CO.,LTD. is dedicated to supporting the scientific community by providing access to essential chemical compounds like Diphenidol, facilitating groundbreaking research and development.
Perspectives & Insights
Chem Catalyst Pro
“Furthermore, its chemical structure lends itself to being a precursor or reference compound in complex organic synthesis projects, contributing to the broader field of chemical research.”
Agile Thinker 7
“When considering Diphenidol for research, it's important to be aware of its pharmacological profile, including known Diphenidol side effects.”
Logic Spark 24
“These might include central nervous system effects like drowsiness or dizziness, which are typical of anticholinergic compounds.”