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基于纤维素二醛和羧基的协同配位与 Fe 可回收导电自修复水凝胶用于传感器。

Synergy coordination of cellulose-based dialdehyde and carboxyl with Fe recoverable conductive self-healing hydrogel for sensor.

机构信息

State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, Guangzhou 510640, China.

State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, Guangzhou 510640, China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2021 Jun;125:112094. doi: 10.1016/j.msec.2021.112094. Epub 2021 Apr 1.

Abstract

A novel dual ionic network cellulose-based composite conductive self-healing hydrogel was fabricated with high elongation, rapid recoverability, high conductive sensitivity, self-healing ability and good biocompatibility. The hydrogel was constructed by the synergistic complexations of new-fashioned bidentate aldehyde groups on dialdehyde cellulose nanofibers (DACNFs) and carboxyl groups of acrylic acid (AA) with Fe. The elongation (~1300%) of the hydrogel containing 1 wt% DACNFs was approximate 13-fold of the pure PAA hydrogel and can recover to original state within 2 min after 80% compression. The self-healing efficiency increased with the addition of DACNFs in the dual ionic network cellulose-based composite conductive self-healing hydrogel. The hydrogel configured for a wearable test and showed high stretching sensitivity with a gauge factor of 13.82 at strain within 1.6%. The gauge factor (GF) decrease with the incremental strain within 20%. GF were 0.696 between 20% and 300% strain, 0.837 within 300% and 500%. Meanwhile, the current had a good linear relationship with the bending angles of hydrogels and pressure on hydrogels, which may provide a great potential in monitor both minor variations and large movements.

摘要

一种新型的双离子网络纤维素基复合导电自修复水凝胶具有高伸长率、快速恢复性、高导电灵敏度、自修复能力和良好的生物相容性。该水凝胶是通过二醛纤维素纳米纤维(DACNFs)上的新型双齿醛基与 AA 中的羧基与 Fe 的协同络合作用构建而成。含有 1wt%DACNFs 的水凝胶的伸长率(~1300%)约为纯 PAA 水凝胶的 13 倍,在 80%压缩后可在 2 分钟内恢复到原始状态。自修复效率随着双离子网络纤维素基复合导电自修复水凝胶中 DACNFs 的添加而增加。该水凝胶被配置为可穿戴测试,在应变范围内为 1.6%时表现出高拉伸灵敏度,其应变系数为 13.82。应变系数(GF)在 20%以内逐渐增加时会降低。在 20%到 300%的应变范围内,GF 为 0.696,在 300%到 500%的应变范围内,GF 为 0.837。同时,电流与水凝胶的弯曲角度和水凝胶上的压力之间存在良好的线性关系,这可能为监测微小变化和大运动提供很大的潜力。

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