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基于功能化纳米纤维素水凝胶动态网络设计的高性能湿电发电机

High-performance moist-electric generator based on dynamic network design of functionalized nanocellulose hydrogel.

作者信息

Zhu Yachong, Wei Lishi, Song Shanshan, Zhang Congcong, Zou Yushan, Song Yongming

机构信息

Key Laboratory of Bio-based Material Science and Technology, Ministry of Education, College of Material Science and Engineering, Northeast Forestry University, Harbin 150040, PR China.

Key Laboratory of Bio-based Material Science and Technology, Ministry of Education, College of Material Science and Engineering, Northeast Forestry University, Harbin 150040, PR China.

出版信息

Int J Biol Macromol. 2025 Sep;321(Pt 4):146359. doi: 10.1016/j.ijbiomac.2025.146359. Epub 2025 Jul 28.

Abstract

Hydrogels are characterized by their exceptional hydrophilic properties, rendering them optimal active materials for moist-electric generator (MEG). Nonetheless, insufficient protonation and ionic diffusion compromise the electrical properties of hydrogels, thereby limiting their practical applications. In this study, an ionic conductive hydrogel based on the combination of functionalized nanocellulose (FCNF) and polyacrylamide (PAM) was developed by UV-initiated polymerization and solvent substitution. The FCH hydrogel has good stretchability (250 %) and high conductivity (17.3S m). In addition, the MEG was constructed using FCH hydrogel. The MEG device has excellent electrical output performance, with open circuit voltage, short circuit current density and maximum power density of 1 V, 1.38 μA cm and 63 nW cm, respectively. At the same time, the MEG also has stable environmental adaptability, and can maintain stable output in a wide humidity range (15-98 %RH) and low temperature (-20 °C). Notably, MEG exhibits scalability through series/parallel configuration, achieving current and voltage outputs of 4.0 V (five series units) and 5.4 μA (five parallel units), and can also be directly used as a power supply to power capacitors and LED light. This work presents a novel approach for developing simple, environmentally friendly, and efficient MEGs for portable self-powered flexible devices.

摘要

水凝胶具有卓越的亲水性,使其成为用于湿电发电机(MEG)的理想活性材料。尽管如此,质子化不足和离子扩散会影响水凝胶的电学性能,从而限制其实际应用。在本研究中,通过紫外光引发聚合和溶剂置换,开发了一种基于功能化纳米纤维素(FCNF)和聚丙烯酰胺(PAM)组合的离子导电水凝胶。FCH水凝胶具有良好的拉伸性(250%)和高电导率(17.3S m)。此外,使用FCH水凝胶构建了MEG。该MEG装置具有优异的电输出性能,开路电压、短路电流密度和最大功率密度分别为1 V、1.38 μA cm和63 nW cm。同时,MEG还具有稳定的环境适应性,可在较宽的湿度范围(15 - 98%RH)和低温(-20°C)下保持稳定输出。值得注意的是,MEG通过串联/并联配置展现出可扩展性,实现了4.0 V(五个串联单元)和5.4 μA(五个并联单元)的电流和电压输出,并且还可直接用作电源为电容器和LED灯供电。这项工作为开发用于便携式自供电柔性设备的简单、环保且高效的MEG提供了一种新方法。

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