Unlock Advanced Synthesis with 3,4,5-Tris(n-dodecane-1-yloxy)benzoic Acid
Discover a high-purity, versatile chemical intermediate essential for your pharmaceutical and organic synthesis needs. Sourced from leading manufacturers in China, we ensure quality and reliability.
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3,4,5-Tris(n-dodecane-1-yloxy)benzoic acid
As a trusted supplier in China, we offer 3,4,5-Tris(n-dodecane-1-yloxy)benzoic acid, a crucial component for intricate chemical processes. Its high purity (97% min) and well-defined properties make it an ideal choice for advanced organic synthesis and as a pharmaceutical raw intermediate. We provide comprehensive technical data, including COA and MSDS, to support your research and development.
- Explore efficient organic synthesis building blocks for complex molecular structures, ensuring reliability in your projects.
- Source high-purity 3,4,5-Tris(n-dodecane-1-yloxy)benzoic acid with CAS 117241-31-3, directly from manufacturers committed to quality.
- Utilize this versatile pharmaceutical raw intermediate in the development of new drug compounds and advanced materials.
- Benefit from our commitment to providing essential synthesis materials intermediates, supporting innovation across the chemical industry.
Product Advantages
Guaranteed Purity and Quality
With a minimum purity of 97%, this benzoic acid derivative is a dependable choice for demanding synthesis applications, supporting reliable outcomes in your research.
Versatile Application Scope
Functioning as both a synthesis material intermediate and a pharmaceutical raw intermediate, it offers broad utility for chemists and formulators.
Secure Storage and Handling Guidance
Proper storage in a cool, dry, well-ventilated area ensures the integrity of the compound, vital for maintaining its chemical properties for synthesis.
Key Applications
Organic Synthesis
Leverage this compound as a key building block in complex organic synthesis pathways, enabling the creation of novel molecular architectures.
Pharmaceutical Development
As a pharmaceutical raw intermediate, it plays a vital role in the synthesis of active pharmaceutical ingredients (APIs) and drug discovery.
Specialty Chemicals
Its unique structure makes it valuable in the development of various specialty chemicals requiring long alkyl chains and functionalized aromatic rings.
Material Science
Explore its potential in material science applications where specific molecular structures and properties are required for advanced materials.