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立体复合型聚乳酸加工技术的最新进展。

Recent Advances in Processing of Stereocomplex-Type Polylactide.

机构信息

College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu, 610065, P. R. China.

出版信息

Macromol Rapid Commun. 2017 Dec;38(23). doi: 10.1002/marc.201700454. Epub 2017 Sep 12.

DOI:10.1002/marc.201700454
PMID:28898498
Abstract

Over the past two decades, biomass-derived and biodegradable polylactide (PLA) has sparked tremendous attention as a sustainable alternative to traditional petroleum-derived polymers for diverse applications. Unfortunately, the current applications of PLA have been mainly limited to biomedical and commodity fields, mostly because the poor heat resistance (resulting from low melting temperature) and hydrolysis stability make it hard to use as an engineering plastic. Stereocomplexation between enantiomeric poly(l-lactide) (PLLA) and poly(d-lactide) (PDLA) opens a new avenue toward PLA-based engineering plastics with improved properties. The formation, crystal structure, properties, and potential applications of stereocomplex-type PLA (SC-PLA) are summarized by some research groups. However, since it is challenging to achieve full stereocomplexation from high-molecular-weight PLLA/PDLA blends and to avoid serious thermal degradation of the PLAs after complete melting, the advances and progress in the processing of SC-PLA into useful products are quite rare in open publication. In this review, some important strategies for enhancing stereocomplex crystallization in practical processing operations are presented and recently developed processing technologies for SC-PLA are highlighted, such as low-temperature sintering. Furthermore, major challenges and future developments are briefly discussed. This review is expected to potentially open up new research activities in the processing of SC-PLA.

摘要

在过去的二十年中,生物量衍生和可生物降解的聚乳酸(PLA)作为传统石油衍生聚合物的可持续替代品,在各种应用中引起了极大的关注。不幸的是,PLA 的当前应用主要限于生物医学和商品领域,主要是因为其耐热性差(由于熔融温度低)和水解稳定性差,难以用作工程塑料。对映体聚(L-丙交酯)(PLLA)和聚(D-丙交酯)(PDLA)之间的立构复合为基于 PLA 的工程塑料提供了改善性能的新途径。一些研究小组总结了立构复合型 PLA(SC-PLA)的形成、晶体结构、性能和潜在应用。然而,由于难以从高分子量 PLLA/PDLA 共混物中实现完全立构复合,并且 PLA 在完全熔融后会严重热降解,因此在将 SC-PLA 加工成有用产品方面的进展相当罕见。在这篇综述中,提出了一些在实际加工操作中增强立构复合结晶的重要策略,并强调了 SC-PLA 的最近开发的加工技术,例如低温烧结。此外,还简要讨论了主要挑战和未来发展。预计本综述可能会为 SC-PLA 的加工开辟新的研究活动。

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