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霍夫迈斯特效应在水凝胶柔性传感器领域的研究进展OA

Research progress in Hoffmeister effect for hydrogel flexible sensors

中文摘要英文摘要

水凝胶作为一种具有高含水量、优异生物相容性和可调节力学性能的柔性材料,已成为构建高性能柔性传感器的理想选择.霍夫迈斯特效应能够在不进行复杂化学修饰的前提下,通过不同的离子作用机制改变水凝胶分子链的聚集状态,可以实现水凝胶力学性能与导电性能的协同优化,从而满足复杂环境下的高灵敏度检测需求.此外,霍夫迈斯特效应还为开发环境稳定性的水凝胶传感器提供了新的研究方向.因此,基于霍夫迈斯特效应的水凝胶柔性传感器在智能电子设备领域展现出巨大的应用潜力.本文综述了霍夫迈斯特效应调节水凝胶的机制,并总结了霍夫迈斯特效应对水凝胶力学性能、导电性能、环境稳定性和生物相容性等性能的调控作用,以及基于霍夫迈斯特效应的水凝胶柔性传感器的应用.最后指出霍夫迈斯特效应调控的水凝胶柔性传感器未来的重点研究方向,旨在为水凝胶柔性应变传感器的进一步发展提供理论基础和实践指导.

Hydrogel is a flexible material with a high water content,excellent biocompatibility,and adjustable mechanical properties,making it an ideal choice for constructing high-performance,flexible sensors.The Hofmeister effect can alter the aggregation state of hydrogel molecular chains through various ionic action mechanisms without the need for complex chemical modifications.This enables synergistic optimization of hydrogel mechanical properties and electrical conductivity,thereby meeting the need for high-sensitivity detection in complex environments.Furthermore,the Hofmeister effect opens up a novel research avenue for the development of environmentally stable hydrogel sensors.Consequently,hydrogel flexible sensors based on the Hofmeister effect demonstrate significant potential for application in the field of smart electronic devices.This review offers a comprehensive review of the mechanisms by which the Hofmeister effect regulates hydrogels,summarizing its impact on the regulation of their mechanical properties,electrical conductivity,environmental stability,and biocompatibility.Additionally,it explores the applications of hydrogel flexible sensors based on the Hofmeister effect.It is concluded that the development of hydrogel flexible sensors modulated by the Hofmeister effect is a pivotal research direction for the future,aiming to provide a theoretical foundation and practical guidance for the further advancement of hydrogel flexible strain sensors.

黄炜婷;陈煜

北京理工大学 材料学院,北京 100081北京理工大学 材料学院,北京 100081

通用工业技术

霍夫迈斯特效应水凝胶柔性传感器运动监测

Hoffmeister effecthydrogelflexible sensormotion monitoring

《材料工程》 2026 (6)

1-12,12

北京市自然科学基金-海淀原始创新联合基金项目(L222036)

10.11868/j.issn.1001-4381.2025.000194

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