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Fabrication of Porous Materials from Natural/Synthetic Biopolymers and Their Composites

机译:从天然/合成生物聚合物及其复合材料制备多孔材料

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摘要

Biopolymers and their applications have been widely studied in recent years. Replacing the oil based polymer materials with biopolymers in a sustainable manner might give not only a competitive advantage but, in addition, they possess unique properties which cannot be emulated by conventional polymers. This review covers the fabrication of porous materials from natural biopolymers (cellulose, chitosan, collagen), synthetic biopolymers (poly(lactic acid), poly(lactic-co-glycolic acid)) and their composite materials. Properties of biopolymers strongly depend on the polymer structure and are of great importance when fabricating the polymer into intended applications. Biopolymers find a large spectrum of application in the medical field. Other fields such as packaging, technical, environmental, agricultural and food are also gaining importance. The introduction of porosity into a biomaterial broadens the scope of applications. There are many techniques used to fabricate porous polymers. Fabrication methods, including the basic and conventional techniques to the more recent ones, are reviewed. Advantages and limitations of each method are discussed in detail. Special emphasis is placed on the pore characteristics of biomaterials used for various applications. This review can aid in furthering our understanding of the fabrication methods and about controlling the porosity and microarchitecture of porous biopolymer materials.
机译:近年来,对生物聚合物及其应用进行了广泛的研究。以可持续的方式用生物聚合物替代油基聚合物材料不仅会带来竞争优势,而且它们具有独特的特性,而常规聚合物无法模仿这些特性。这篇综述涵盖了由天然生物聚合物(纤维素,壳聚糖,胶原蛋白),合成生物聚合物(聚乳酸,聚乳酸-乙醇酸共聚物)及其复合材料制成的多孔材料。生物聚合物的性能在很大程度上取决于聚合物的结构,在将聚合物制造成预期的应用时非常重要。生物聚合物在医学领域有广泛的应用。包装,技术,环境,农业和食品等其他领域也越来越重要。将孔隙率引入生物材料中扩大了应用范围。有许多用于制造多孔聚合物的技术。审查了制造方法,包括较新的基本技术和常规技术。详细讨论了每种方法的优缺点。特别强调用于各种应用的生物材料的孔特性。这篇综述可以帮助我们进一步了解制造方法以及控制多孔生物聚合物材料的孔隙率和微结构。

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