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用于聚乳酸复合材料的结构可控木质素复合物,具有出色的抗菌、荧光和光热转换性能。

Structure-controlled lignin complex for PLA composites with outstanding antibacterial, fluorescent and photothermal conversion properties.

作者信息

Wang Yongqin, Hou Jie, Huang Yangze, Fu Yu

机构信息

Co-Innovation Center of Efficient Processing and Utilization of Forest Resource, School of Materials Science and Engineering, Nanjing Forestry University, Nanjing, Jiangsu 210037, China.

Co-Innovation Center of Efficient Processing and Utilization of Forest Resource, School of Materials Science and Engineering, Nanjing Forestry University, Nanjing, Jiangsu 210037, China.

出版信息

Int J Biol Macromol. 2022 Jan 1;194:1002-1009. doi: 10.1016/j.ijbiomac.2021.11.159. Epub 2021 Nov 28.

Abstract

Polylactic acid (PLA) is increasingly being considered as an ideal biodegradable candidate to replace petroleum-based polymers. However, its practical applications are often hampered by the poor mechanical robustness and solo functionality. Herein, based on the mechanical property improvement of PLA we proposed a simple process of assembling lignin-hybridized modifier and PLA matrix, as opposed to the traditional trade-off between mechanical strength and functionality, while anchoring a biofluorescent moiety onto lignin surfaces. Specifically, the fluorophore group could act as interfacial compatibilizer of complex and facilitate the shape-tailored hybrids for promoting functionality flexibility. With the bimetallic hetero-particles, the preferable lignin-assembled complex could be controllably configured as an antibacterial, fluorophore and photothermal agent. Thus, mechanical enhancement, fluorescence introduction and favorable photothermal ability of the resulting PLA composites were successfully achieved for integrated unification of structural robustness, geometric integrity and functional multiplicity, which was never seen in the other reports. The results showed that PLA composites containing 5 wt% modified lignin, 10 wt% zinc oxide, and 5 wt% silver presented excellent mechanical, fluorescent, photothermal conversion properties. By controlling the ZnO content and morphology, strong inhibition of Escherichia coli (Gram-negative) than that of Staphylococcus Aureus (Gram-positive) was also observed. The flake-shaped ZnO /Ag hybrids contributed to better overall performance of PLA composites than the rod-shaped ZnO/Ag. In this work we developed a facile strategy to assemble a bioderived fluorophore with lignin particles for constructing a structure-controlled complex as a multitasking modifier, featuring mechanical unity and functional adaptability. Specifically, the lignin reinforcement and bimetallic hybrids with different morphologies were explored as an effective fluorophore, antibacterial and photothermal agent. Through multiple dehydration reactions, a conjugating fluorophore was successfully grafted on lignin surfaces to serve as an interface modifier without physical changing its structural robustness. And morphology-tailored hybrid was advantageously immobilized on predefined hetero-particle carrier of fluorescent lignin and endowed composites with desirable antimicrobial properties. The developed strategy would expand the functional applications of PLA materials in food packaging, biopharmaceuticals and simple fluorescent anti-counterfeiting.

摘要

聚乳酸(PLA)越来越被视为替代石油基聚合物的理想可生物降解候选材料。然而,其实际应用常常受到机械强度差和功能单一的阻碍。在此,基于聚乳酸机械性能的提升,我们提出了一种简单的方法,将木质素杂交改性剂与聚乳酸基体进行组装,与传统的机械强度和功能之间的权衡不同,同时将生物荧光部分锚定在木质素表面。具体而言,荧光基团可作为复合物的界面增容剂,促进形状定制的杂化物,以提升功能灵活性。借助双金属异质粒子,可将优选的木质素组装复合物可控地配置为抗菌、荧光和光热剂。因此,所得聚乳酸复合材料成功实现了机械增强、荧光引入和良好的光热能力,实现了结构坚固性、几何完整性和功能多样性的综合统一,这在其他报道中从未见过。结果表明,含有5 wt%改性木质素、10 wt%氧化锌和5 wt%银的聚乳酸复合材料具有优异的机械、荧光、光热转换性能。通过控制氧化锌的含量和形态,还观察到对大肠杆菌(革兰氏阴性菌)的抑制作用强于金黄色葡萄球菌(革兰氏阳性菌)。片状氧化锌/银杂化物比棒状氧化锌/银杂化物对聚乳酸复合材料的整体性能贡献更大。在这项工作中,我们开发了一种简便的策略,将生物衍生荧光团与木质素颗粒组装,构建结构可控的复合物作为多任务改性剂,具有机械统一性和功能适应性。具体而言,探索了具有不同形态的木质素增强体和双金属杂化物作为有效的荧光团、抗菌和光热剂。通过多次脱水反应,一种共轭荧光团成功接枝到木质素表面,作为界面改性剂,而不改变其结构坚固性。形态定制的杂化物有利地固定在荧光木质素的预定义异质粒子载体上,赋予复合材料所需的抗菌性能。所开发的策略将扩大聚乳酸材料在食品包装、生物制药和简单荧光防伪方面的功能应用。

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