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一种用于柔性应变传感器和超级电容器的多功能、高拉伸性且抗冻的海藻酸盐/聚丙烯酰胺/聚苯胺多网络水凝胶。

A versatile, highly stretchable, and anti-freezing alginate/polyacrylamide/polyaniline multi-network hydrogel for flexible strain sensors and supercapacitors.

作者信息

Yu Mingjun, Gao Yang, Hong Hengchang, Wang Tao, Peng Zhiping

机构信息

Department of Polymer Materials and Engineering, School of Physics and Materials Science, Nanchang University, Nanchang 330031, China.

Department of Polymer Materials and Engineering, School of Physics and Materials Science, Nanchang University, Nanchang 330031, China.

出版信息

Int J Biol Macromol. 2025 Feb;288:138740. doi: 10.1016/j.ijbiomac.2024.138740. Epub 2024 Dec 12.

Abstract

Conductive hydrogels have great potential as electrolyte materials for flexible strain sensors and supercapacitors. However, it remains a challenge to develop multifunctional hydrogels with excellent frost resistance, toughness, ionic conductivity, and electrochemical properties using simple methods. Herein, a "chemical-physical-ionic" cross-linked sodium alginate/polyacrylamide/polyaniline (SA/PAM/Ca/PANI) multi-network hydrogel was developed by in situ polymerization of aniline monomer within a Ca-crosslinked SA/PAM hydrogel network. The SA/PAM/Ca/PANI hydrogel shows excellent mechanical properties, (tensile strength of 0.577 MPa at a strain of 1991 %), high toughness (5.52 KJ·m), and high ionic conductivity (16.51 S·m at 25 °C and 11.08 S·m at -20 °C). The SA/PAM/Ca/PANI hydrogel-based strain sensor exhibited high sensitivity (gauge factor of 3.82 at 60-500 % strain), an extensive detection range (0-2000 %), and excellent frost resistance. The strain sensor can accurately monitor various human motions, as well as electrocardiograph (ECG) signals during both rest and exercise. The supercapacitor assembled with the SA/PAM/Ca/PANI hydrogel electrolyte exhibited a high surface capacitance (177.19 mF·cm at 2 mA·cm), maximum energy density (21.93 Wh·kg), and high power density (3089 W·kg). Moreover, it maintained satisfactory electrochemical stability with 77.8 % capacitance retention after 4000 cycles. Therefore, the versatile SA/PAM/Ca/PANI hydrogel shows promising potential for applications in flexible wearable electronic devices.

摘要

导电水凝胶作为柔性应变传感器和超级电容器的电解质材料具有巨大潜力。然而,使用简单方法开发具有优异抗冻性、韧性、离子导电性和电化学性能的多功能水凝胶仍然是一个挑战。在此,通过在钙交联的SA/PAM水凝胶网络中原位聚合苯胺单体,制备了一种“化学-物理-离子”交联的海藻酸钠/聚丙烯酰胺/聚苯胺(SA/PAM/Ca/PANI)多网络水凝胶。SA/PAM/Ca/PANI水凝胶具有优异的力学性能(在1991%应变下的拉伸强度为0.577MPa)、高韧性(5.52KJ·m)和高离子导电性(25℃时为16.51S·m,-20℃时为11.08S·m)。基于SA/PAM/Ca/PANI水凝胶的应变传感器具有高灵敏度(60-500%应变下的应变系数为3.82)、宽检测范围(0-2000%)和优异的抗冻性。该应变传感器能够准确监测各种人体运动以及静息和运动期间的心电图(ECG)信号。用SA/PAM/Ca/PANI水凝胶电解质组装的超级电容器表现出高表面电容(2mA·cm下为177.19mF·cm)、最大能量密度(21.93Wh·kg)和高功率密度(3089W·kg)。此外,在4000次循环后,其电容保持率为77.8%,保持了令人满意的电化学稳定性。因此,多功能的SA/PAM/Ca/PANI水凝胶在柔性可穿戴电子设备中显示出广阔的应用前景。

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