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超韧性聚乳酸共混物:综述

Super tough poly(lactic acid) blends: a comprehensive review.

作者信息

Zhao Xipo, Hu Huan, Wang Xin, Yu Xiaolei, Zhou Weiyi, Peng Shaoxian

机构信息

Hubei Provincial Key Laboratory of Green Materials for Light Industry, Collaborative Innovation Center of Green Light-weight Materials and Processing, Hubei University of Technology Wuhan 430068 China

出版信息

RSC Adv. 2020 Apr 1;10(22):13316-13368. doi: 10.1039/d0ra01801e. eCollection 2020 Mar 30.

Abstract

Poly(lactic acid) or poly(lactide) (PLA) is a renewable, bio-based, and biodegradable aliphatic thermoplastic polyester that is considered a promising alternative to petrochemical-derived polymers in a wide range of commodity and engineering applications. However, PLA is inherently brittle, with less than 10% elongation at break and a relatively poor impact strength, which limit its use in some specific areas. Therefore, enhancing the toughness of PLA has been widely explored in academic and industrial fields over the last two decades. This work aims to summarize and organize the current development in super tough PLA fabricated polymer blending. The miscibility and compatibility of PLA-based blends, and the methods and approaches for compatibilized PLA blends are briefly discussed. Recent advances in PLA modified with various polymers for improving the toughness of PLA are also summarized and elucidated systematically in this review. Various polymers used in toughening PLA are discussed and organized: elastomers, such as petroleum-based traditional polyurethanes (PUs), bio-based elastomers, and biodegradable polyester elastomers; glycidyl ester compatibilizers and their copolymers/elastomers, such as poly(ethylene--glycidyl methacrylate) (EGMA), poly(ethylene--butylene-acrylate--glycidyl methacrylate) (EBA-GMA); rubber; petroleum-based traditional plastics, such as PE and PP; and various biodegradable polymers, such as poly(butylene adipate--terephthalate) (PBAT), polycaprolactone (PCL), poly(butylene succinate) (PBS), and natural macromolecules, especially starch. The high tensile toughness and high impact strength of PLA-based blends are briefly outlined, while the super tough PLA-based blends with impact strength exceeding 50 kJ m are elucidated in detail. The toughening strategies and approaches of PLA based super tough blends are summarized and analyzed. The relationship of the properties of PLA-based blends and their morphological parameters, including particle size, interparticle distance, and phase morphologies, are presented.

摘要

聚乳酸或聚丙交酯(PLA)是一种可再生、生物基且可生物降解的脂肪族热塑性聚酯,在众多日用品和工程应用中,它被视为石化衍生聚合物的一种有前景的替代品。然而,PLA本质上很脆,断裂伸长率小于10%,冲击强度相对较差,这限制了其在某些特定领域的应用。因此,在过去二十年里,学术界和工业界广泛探索了提高PLA韧性的方法。这项工作旨在总结和梳理通过聚合物共混制备的超韧性PLA的当前发展情况。简要讨论了基于PLA的共混物的混溶性和相容性,以及增容PLA共混物的方法和途径。本文还系统地总结和阐述了用各种聚合物改性PLA以提高其韧性的最新进展。讨论并梳理了用于增韧PLA的各种聚合物:弹性体,如石油基传统聚氨酯(PU)、生物基弹性体和可生物降解聚酯弹性体;缩水甘油酯增容剂及其共聚物/弹性体,如聚(乙烯-甲基丙烯酸缩水甘油酯)(EGMA)、聚(乙烯-丁烯-丙烯酸酯-甲基丙烯酸缩水甘油酯)(EBA-GMA);橡胶;石油基传统塑料,如PE和PP;以及各种可生物降解聚合物,如聚(己二酸丁二醇酯-对苯二甲酸丁二醇酯)(PBAT)、聚己内酯(PCL)、聚丁二酸丁二醇酯(PBS),还有天然大分子,特别是淀粉。简要概述了基于PLA的共混物的高拉伸韧性和高冲击强度,同时详细阐述了冲击强度超过50 kJ/m²的超韧性基于PLA的共混物。总结并分析了基于PLA的超韧性共混物的增韧策略和方法。介绍了基于PLA的共混物的性能与其形态学参数之间的关系,包括粒径、粒子间距离和相形态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/004c/9051451/4fd1ed657611/d0ra01801e-f1.jpg

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