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源自类聚乙烯长链聚酯的圆形熔纺纺织纤维。

Circular Melt-Spun Textile Fibers from Polyethylene-like Long-Chain Polyesters.

作者信息

Wurst Katrin, Birkle Melissa, Scherer Katharina J, Mecking Stefan

机构信息

Department of Chemistry, University of Konstanz, Universitätsstrasse 10, 78457 Konstanz, Germany.

出版信息

ACS Appl Polym Mater. 2024 Jul 30;6(15):9219-9225. doi: 10.1021/acsapm.4c01570. eCollection 2024 Aug 9.

Abstract

As textiles contribute considerably to overall anthropogenic pollution and resource consumption, increasing their circularity is essential. We report the melt-spinning of long-chain polyesters, materials recently shown to be fully chemically recyclable under mild conditions, as well as biodegradable. High-quality uniform fibers are enabled by the polymers' favorable combination of thermal stability, crystallization ability, melt strength, and homogeneity. The polyethylene-like crystalline structure endows these fibers with mechanical strength, which is further enhanced by its orientation upon drawing (tensile strength of up to 270 MPa). In vitro depolymerization by high concentrations of cutinase underlines the accessibility of the fibers for enzymatic degradation, which can proceed from the surface and through the entire fiber within days, depending on the choice of the fiber material. Fibers and knitted fabrics withstand stress, as encountered in machine washing.

摘要

由于纺织品对整体人为污染和资源消耗有相当大的贡献,提高其循环利用性至关重要。我们报道了长链聚酯的熔纺,最近的研究表明这些材料在温和条件下可完全化学回收,并且具有生物降解性。聚合物良好的热稳定性、结晶能力、熔体强度和均质性组合使得能够纺制出高质量的均匀纤维。类似聚乙烯的晶体结构赋予这些纤维机械强度,通过拉伸时的取向作用(拉伸强度高达270兆帕),强度进一步增强。高浓度角质酶的体外解聚作用突显了纤维对酶促降解的可及性,根据纤维材料的选择,酶促降解可在数天内从表面开始并贯穿整个纤维。纤维和针织物能够承受机洗时遇到的应力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d91d/11320378/efe9b7df9820/ap4c01570_0001.jpg

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