High Purity D-Lactide: The Key to Advanced Biodegradable Polymers
Unlock the potential of optically active PLLA for cutting-edge biomedical and industrial applications.
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D-Lactide
D-Lactide is a critical polymerization monomer, primarily utilized for the homopolymerization to yield D-polylactic acid (PLLA). This resulting PLLA boasts optical activity, excellent stereoregularity, inherent crystallinity, and a notable melting point, contributing to its robust mechanical strength. These properties make it an ideal candidate for demanding medical applications, such as the fabrication of orthopedic load-bearing components like bone screws.
- Discover the applications of D-Lactide polymerization monomer for advanced materials.
- Learn how D-polylactic acid homopolymerization creates optically active polymers.
- Explore the use of PLLA in orthopedic bone screws for superior performance.
- Understand the importance of high purity D-Lactide in biodegradable polymer synthesis.
Key Advantages
Exceptional Purity
Achieve reliable results with our D-Lactide, boasting a purity of ≥99.5%, crucial for consistent biodegradable polymer synthesis.
Biomedical Superiority
Leverage the unique properties of D-lactide for creating medical-grade polymers, especially for PLLA in orthopedic applications.
Enhanced Mechanical Properties
Benefit from the optical activity and crystallinity of D-polylactic acid derived from this monomer, leading to strong and durable materials.
Key Applications
Medical Implants
Utilize D-lactide for the synthesis of PLLA, a key material for biodegradable orthopedic bone screws and other load-bearing medical devices.
Advanced Bioplastics
Explore the potential of D-polylactic acid homopolymerization in creating advanced biodegradable plastics with specific optical and mechanical properties.
Chiral Synthesis
As an optically active monomer, D-lactide is vital for precise chiral chemical synthesis in various specialized industries.
Specialty Polymer Production
Employ D-lactide as a polymerization monomer to achieve desired stereoregularity and crystallinity in specialty polymer applications.