3-Acetyl-17-deacetyl Rocuronium Bromide: Synthesis, Properties, and Applications in Pharmaceutical Research
Explore the critical chemical properties and research applications of this vital pharmaceutical intermediate.
Get a Quote & SampleProduct Core Value

3-Acetyl-17-deacetyl Rocuronium Bromide
This compound serves as a vital reference standard in analytical chemistry for developing and testing new analytical methods for pharmaceutical compounds. Its detailed structural information and precise molecular weight make it indispensable for ensuring data accuracy and reliability in quality control processes for neuromuscular blocking agents.
- Detailed Spectroscopic Characterization: Utilize NMR and mass spectrometry for definitive structural identification and to understand the molecular architecture, crucial for accurate 3-acetyl-17-deacetyl rocuronium bromide synthesis.
- Solid-State Properties Analysis: Differential scanning calorimetry and X-ray diffraction provide insights into its crystalline nature and thermal behavior, aiding in material processing and handling.
- Preparation Methods Elucidation: Understanding epoxide ring-opening and selective deacetylation processes is key to optimizing yields and purity in chemical synthesis.
- Applications in Anesthesia: This compound is significant in studying the pharmacological properties of neuromuscular blocking agents used in anesthesia to induce muscle relaxation during surgical procedures.
Key Advantages
Unparalleled Purity for Research
Achieve reliable experimental outcomes with high-purity standards, ensuring accurate results in your pharmaceutical research and development efforts.
Advanced Analytical Insights
Leverage comprehensive spectroscopic data to confirm the identity and structure of your synthesized compounds, vital for any pharmaceutical intermediates preparation methods.
Streamlined Synthesis Optimization
Improve your chemical synthesis routes by understanding the common impurities and degradation pathways, leading to more efficient production of critical compounds.
Key Applications
Pharmaceutical Analysis
Serves as a critical reference standard for High-Performance Liquid Chromatography (HPLC) and other analytical techniques to ensure the quality of neuromuscular blocking agents.
Drug Synthesis Research
A key building block and intermediate in the synthesis of complex pharmaceutical compounds, aiding in the development of new therapeutic agents.
Anesthetic Studies
Investigate the pharmacological mechanisms and efficacy of neuromuscular blocking agents used in anesthesia, contributing to patient safety and procedural success.
Impurity Profiling
Essential for identifying and quantifying impurities in related pharmaceutical products, a critical step in meeting regulatory standards for drug development.