Unveiling beta-(dimethylamino)-beta-ethylphenethyl alcohol CAS 39068-94-5
Explore the properties, applications, and sourcing of this key chemical intermediate.
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beta-(dimethylamino)-beta-ethylphenethyl alcohol
Discover the essential role of beta-(dimethylamino)-beta-ethylphenethyl alcohol in various chemical synthesis pathways and its importance as a pharmaceutical impurity reference standard. This compound, identified by CAS 39068-94-5, is a vital component in advanced organic synthesis.
- Explore the chemical intermediate price list for cost-effective procurement of essential compounds.
- Learn about the synthesis of Trimebutine Impurity A and its significance in pharmaceutical research.
- Source high-quality beta-(dimethylamino)-beta-ethylphenethyl alcohol from trusted suppliers in China.
- Understand the detailed chemical properties of beta-(dimethylamino)-beta-ethylphenethyl alcohol for your research needs.
Product Advantages
High Purity and Quality
Ensure your research integrity with beta-(dimethylamino)-beta-ethylphenethyl alcohol that meets stringent purity standards, crucial for accurate results in pharmaceutical analysis.
Versatile Intermediate
Leverage the versatility of this compound as a building block in complex organic synthesis, enabling the creation of novel molecules with diverse applications.
Reliable Sourcing
Access a global network of beta-(dimethylamino)-beta-ethylphenethyl alcohol suppliers, guaranteeing consistent availability and competitive pricing for your bulk chemical needs.
Key Applications
Pharmaceutical Impurity Standards
Utilize beta-(dimethylamino)-beta-ethylphenethyl alcohol as a certified reference standard for identifying and quantifying impurities in pharmaceutical products, ensuring regulatory compliance.
Organic Synthesis
Employ this compound in intricate organic synthesis to create novel chemical entities for drug discovery, material science, and other advanced research fields.
Research and Development
Integrate beta-(dimethylamino)-beta-ethylphenethyl alcohol into your R&D processes, facilitating breakthroughs in chemical research and product development.
Trimebutine Related Studies
Investigate the degradation pathways and metabolic profiles of Trimebutine by using this impurity as a reference, aiding in pharmacological studies.