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通过引入原位纳米纤维状聚丁二酸丁二醇酯制备用于绿色包装的高强度和高韧性聚乳酸,实现前所未有的进展。

Unprecedented access to strong and ductile poly(lactic acid) by introducing In Situ Nanofibrillar Poly(butylene succinate) for green packaging.

作者信息

Xie Lan, Xu Huan, Niu Ben, Ji Xu, Chen Jun, Li Zhong-Ming, Hsiao Benjamin S, Zhong Gan-Ji

机构信息

College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering, Sichuan University , Chengdu, 610065, Sichuan, People's Republic of China.

出版信息

Biomacromolecules. 2014 Nov 10;15(11):4054-64. doi: 10.1021/bm5010993. Epub 2014 Oct 8.

Abstract

The notion of toughening poly(lactic acid) (PLA) by adding flexible biopolymers has generated enormous interest but has yielded few desirable advances, mainly blocked by the sacrifice of strength and stiffness due to uncontrollable phase morphology and poor interfacial interactions. Here the phase control methodology, that is, intense extrusion compounding followed by "slit die extrusion-hot stretching-quenching" technique, was proposed to construct well-aligned, stiff poly(butylene succinate) (PBS) nanofibrils in the PLA matrix for the first time. We show that generating nanosized discrete droplets of PBS phase during extrusion compounding is key to enable the development of in situ nanofibrillar PBS assisted by the shearing/stretching field. The size of PBS nanofibrils strongly dependent on the PBS content, showing an increased average diameter from 83 to 116 and 236 nm for the composites containing 10, 20, and 40 wt % nanofibrils, respectively. More importantly, hybrid shish-kebab superstructure anchoring ordered PLA kebabs were induced by the PBS nanofibrils serving as the central shish, conferring the creation of tenacious interfacial crystalline ligaments. The exceptional combination of strength, modulus, and ductility for the composites loaded 40 wt % PBS nanofibrils were demonstrated, outperforming pure PLA with the increments of 31, 51, and 72% in strength, modulus, and elongation at break (56.4 MPa, 1702 MPa, and 92.4%), respectively. The high strength, modulus, and ductility are unprecedented for PLA and are in great potential need for packaging applications.

摘要

通过添加柔性生物聚合物来增韧聚乳酸(PLA)的想法引起了极大的兴趣,但进展甚微,主要是由于不可控的相形态和不良的界面相互作用导致强度和刚度的牺牲。在此,首次提出了相控方法,即强力挤出共混,然后采用“狭缝模头挤出-热拉伸-淬火”技术,在PLA基体中构建排列良好、坚硬的聚丁二酸丁二醇酯(PBS)纳米纤维。我们表明,在挤出共混过程中生成纳米尺寸的离散PBS相液滴是在剪切/拉伸场辅助下原位形成纳米纤维状PBS的关键。PBS纳米纤维的尺寸强烈依赖于PBS含量,对于含有10%、20%和40%重量百分比纳米纤维的复合材料,其平均直径分别从83nm增加到116nm和236nm。更重要的是,以PBS纳米纤维为中心“晶须”诱导了混合串晶超结构,锚定有序的PLA“串”,从而形成坚韧的界面结晶韧带。对于负载40%重量百分比PBS纳米纤维的复合材料,其强度、模量和延展性的优异组合得到了证明,分别比纯PLA的强度、模量和断裂伸长率提高了31%、51%和72%(分别为56.4MPa、1702MPa和92.4%)。这种高强度、高模量和高延展性对于PLA来说是前所未有的,在包装应用中具有巨大的潜在需求。

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