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采用聚乙烯醇、羧甲基壳聚糖、纤维素纳米纤维和基于木质素的碳制备的柔性导电水凝胶可用作应变和压力传感器。

Flexible conductive hydrogel fabricated with polyvinyl alcohol, carboxymethyl chitosan, cellulose nanofibrils, and lignin-based carbon applied as strain and pressure sensor.

机构信息

College of Light Industry and Food Engineering, Guangxi University, Nanning 530004, PR China; Ningbo Institute of Materials Technology & Engineering, Chinese Academy of Sciences, Ningbo 315201, PR China.

College of Light Industry and Food Engineering, Guangxi University, Nanning 530004, PR China; Guangxi Key Laboratory of Clean Pulp & Papermaking and Pollution Control, Guangxi University, Nanning 530004, PR China.

出版信息

Int J Biol Macromol. 2021 Jan 1;166:1526-1534. doi: 10.1016/j.ijbiomac.2020.11.032. Epub 2020 Nov 9.

Abstract

Employing renewable, environmentally friendly, low-cost lignocellulose to design flexible pressure sensitive hydrogel (PSH) as strain and pressure sensors in wearable electronics represents the global perspective to build sustainable and green society. Lignin-based carbon (LC), as the conductive filler, were uniform distributed in the hydrogel system composing by polyvinyl alcohol (PVA), carboxymethyl chitosan (CMC), and cellulose nanofibrils (CNF) to assemble PSH. The analysis revealed that the cross-linking of components through hydrogen bonds formed among hydroxyl group, amino group and carboxyl group exerts the hydrogel with stretching ability and fatigue resistance. The results indicated that the fracture tensile strength and compression stress of the PC/CNF/LC hydrogel were 133 kPa and 37.7 kPa, respectively. Because of the existence of LC, PSH hydrogel exhibits the sensitive deformation-dependent conductivity and can be applied as a flexible strain and pressure sensor monitoring body motions such as elbow flexion, finger bend and palm grip. Therefore, the assembled PSH hydrogel is a prominent candidate applying as the strain and pressure sensor devices.

摘要

利用可再生、环保、低成本的木质纤维素设计可拉伸压力敏感水凝胶(PSH)作为可穿戴电子设备中的应变和压力传感器,代表了全球建设可持续绿色社会的观点。基于木质素的碳(LC)作为导电填料,均匀分布在由聚乙烯醇(PVA)、羧甲基壳聚糖(CMC)和纤维素纳米纤维(CNF)组成的水凝胶系统中,以组装 PSH。分析表明,通过羟基、氨基和羧基之间形成的氢键交联使水凝胶具有拉伸能力和耐疲劳性。结果表明,PC/CNF/LC 水凝胶的断裂拉伸强度和压缩应力分别为 133kPa 和 37.7kPa。由于 LC 的存在,PSH 水凝胶表现出敏感的变形相关电导率,并可作为监测肘部弯曲、手指弯曲和手掌抓握等身体运动的柔性应变和压力传感器。因此,组装的 PSH 水凝胶是一种很有前途的应变和压力传感器器件应用候选材料。

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