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Poly(lactic Acid): A Versatile Biobased Polymer for the Future with Multifunctional Properties—From Monomer Synthesis Polymerization Techniques and Molecular Weight Increase to PLA Applications

机译:聚(乳酸):用于未来的多功能性质的多功能性质 - 来自单体合成聚合技术和分子量增加到PLA应用

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摘要

Environmental problems, such as global warming and plastic pollution have forced researchers to investigate alternatives for conventional plastics. Poly(lactic acid) (PLA), one of the well-known eco-friendly biodegradables and biobased polyesters, has been studied extensively and is considered to be a promising substitute to petroleum-based polymers. This review gives an inclusive overview of the current research of lactic acid and lactide dimer techniques along with the production of PLA from its monomers. Melt polycondensation as well as ring opening polymerization techniques are discussed, and the effect of various catalysts and polymerization conditions is thoroughly presented. Reaction mechanisms are also reviewed. However, due to the competitive decomposition reactions, in the most cases low or medium molecular weight (MW) of PLA, not exceeding 20,000–50,000 g/mol, are prepared. For this reason, additional procedures such as solid state polycondensation (SSP) and chain extension (CE) reaching MW ranging from 80,000 up to 250,000 g/mol are extensively investigated here. Lastly, numerous practical applications of PLA in various fields of industry, technical challenges and limitations of PLA use as well as its future perspectives are also reported in this review.
机译:全球变暖和塑料污染等环境问题迫使研究人员调查传统塑料的替代品。聚(乳酸)(PLA)是众所周知的环保生物降解剂和生物化聚酯之一,已经被广泛地研究,被认为是对石油基聚合物的有望的替代品。本综述提供了乳酸和丙交酯二聚体技术的当前研究以及从其单体的生产。讨论了熔融缩聚以及环开环聚合技术,彻底呈现各种催化剂和聚合条件的效果。还审查了反应机制。然而,由于具有竞争性分解反应,在大多数情况下,制备不超过20,000-50,000g /摩尔的低或中等分子量(MW)。因此,此处广泛研究了达到80,000高达250,000g / mol的固态缩聚(SSP)和链延伸(CE)的额外程序。最后,在本次审查中还报告了在各种行业领域,技术挑战和解放性的局域中的众多实际应用以及未来的观点。

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