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Polyhydroxyalkanoates PHAs

(Total 27 Products)

  • PHA for melt spinning of fibers

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    Polyhydroxy fatty acid ester (polyhydroxyalkanoates and PHA), is quickly developed in recent 20 years, is one of the many microbial synthesis of polyester in the cell, is a kind of natural macromolecule biomaterial due to PHA and at the same time...

  • PHA for 3D printing

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    Polyhydroxy fatty acid ester (polyhydroxyalkanoates and PHA), is quickly developed in recent 20 years, is one of the many microbial synthesis of polyester in the cell, is a kind of natural macromolecule biomaterial due to PHA and at the same time...

  • Imported Film grade PHA

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    Polyhydroxy fatty acid ester (polyhydroxyalkanoates and PHA), is quickly developed in recent 20 years, is one of the many microbial synthesis of polyester in the cell, is a kind of natural macromolecule biomaterial due to PHA and at the same time...

Polyhydroxyalkanoates (PHAs) comprise a group of natural biodegradable polyesters that are synthesized by microorganisms. However, several disadvantages limit their competition with traditional synthetic plastics or their application as ideal biomaterials. These disadvantages include their poor mechanical properties, high production cost, limited functionalities, incompatibility with conventional thermal processing techniques and susceptibility to thermal degradation. To circumvent these drawbacks, PHAs need to be modified to ensure improved performance in specific applications. In this review, well-established modification methods of PHAs are summarized and discussed. The improved properties of PHA that blends with natural raw materials or other biodegradable polymers, including starch, cellulose derivatives, lignin, poly(lactic acid), polycaprolactone and different PHA-type blends, are summarized. The functionalization of PHAs by chemical modification is described with respect to two important synthesis approaches: block copolymerization and graft copolymerization. The expanded utilization of the modified PHAs as engineering materials and the biomedical significance in different areas are also addressed.

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