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应变诱导取向促进了高拉伸和坚韧的基于木聚糖的水凝胶的制备,用于应变传感器。

Strain-induced orientation facilitates the fabrication of highly stretchable and tough xylan-based hydrogel for strain sensors.

机构信息

Institute of Chemical Industry of Forest Products, Chinese Academy of Forestry, National Engineering Laboratory for Biomass Chemical Utilization, Key Laboratory of Chemical Engineering of Forest Products, National Forestry and Grassland Administration, Key Laboratory of Biomass Energy and Material, Nanjing 210042, Jiangsu, China; Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing 210037, Jiangsu, China; Research Institute of Subtropical Forestry, Chinese Academy of Forestry, Daqiao Road73#, Hangzhou 311400, Zhejiang, China.

Institute of Chemical Industry of Forest Products, Chinese Academy of Forestry, National Engineering Laboratory for Biomass Chemical Utilization, Key Laboratory of Chemical Engineering of Forest Products, National Forestry and Grassland Administration, Key Laboratory of Biomass Energy and Material, Nanjing 210042, Jiangsu, China; Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing 210037, Jiangsu, China; Key Laboratory of Wood Material Science and Application, Ministry of Education, MOE Engineering Research Center of Forestry Biomass Materials and Energy, Beijing Forestry University, 100083 Beijing, China.

出版信息

Carbohydr Polym. 2023 Jul 15;312:120827. doi: 10.1016/j.carbpol.2023.120827. Epub 2023 Mar 20.

Abstract

Stretchable and tough polysaccharide-based functional hydrogels have gained popularity for various applications. However, it still remains a great challenge to simultaneously own satisfactory stretchability and toughness, particularly when incorporating renewable xylan to offer sustainability. Herein, we describe a novel stretchable and tough xylan-based conductive hydrogel utilizing the natural feature of rosin derivative. The effect of different compositions on the mechanical properties and the physicochemical properties of corresponding xylan-based hydrogels were systematically investigated. Owing to the multiple non-covalent interactions among different components to dissipate energies and the strain-induced orientation of rosin derivative during the stretching, the highest tensile strength, strain, and toughness of xylan-based hydrogels could reach 0.34 MPa, 2098.4 %, and 3.79 ± 0.95 MJ/m, respectively. Furthermore, by incorporating MXene as the conductive fillers, the strength and toughness of hydrogels were further enhanced to 0.51 MPa and 5.95 ± 1.19 MJ/m. Finally, the synthesized xylan-based hydrogels were able to serve as a reliable and sensitive strain sensor to monitor the movements of human beings. This study provides new insights to develop stretchable and tough conductive xylan-based hydrogel, especially utilizing the natural feature of bio-based resources.

摘要

具有拉伸性和韧性的多糖基功能水凝胶因其在各种应用中的优势而受到广泛关注。然而,要同时兼具令人满意的拉伸性和韧性,特别是在引入可再生木聚糖以实现可持续性时,仍然是一个巨大的挑战。本文描述了一种利用松香衍生物天然特性的新型可拉伸和坚韧的木聚糖基导电水凝胶。系统研究了不同组成对木聚糖基水凝胶的力学性能和物理化学性能的影响。由于不同成分之间存在多种非共价相互作用,可以耗散能量,并且在拉伸过程中松香衍生物发生应变诱导取向,木聚糖基水凝胶的拉伸强度、应变和韧性最高可达 0.34 MPa、2098.4%和 3.79 ± 0.95 MJ/m。此外,通过引入 MXene 作为导电填料,水凝胶的强度和韧性进一步提高到 0.51 MPa 和 5.95 ± 1.19 MJ/m。最后,所合成的木聚糖基水凝胶可用作可靠且灵敏的应变传感器,以监测人体的运动。本研究为开发具有拉伸性和韧性的导电木聚糖基水凝胶提供了新的思路,特别是利用生物基资源的天然特性。

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