Bhuyan Md Murshed, Jeong Jae-Ho
Research Center for Green Energy Systems, Department of Mechanical, Smart, and Industrial Engineering (Mechanical Engineering Major), Gachon University, 1342 Seongnam-daero, Sujeong-gu, Seongnam-si 13120, Gyeonggi-do, Republic of Korea.
Gels. 2024 Aug 23;10(9):548. doi: 10.3390/gels10090548.
Owing to their physical and chemical properties and stimuli-responsive nature, gels and hydrogels play vital roles in diverse application fields. The three-dimensional polymeric network structure of hydrogels is considered an alternative to many materials, such as conductors, ordinary films, constituent components of machines and robots, etc. The most recent applications of gels are in different devices like sensors, actuators, flexible screens, touch panels, flexible storage, solar cells, batteries, and electronic skin. This review article addresses the devices where gels are used, the progress of research, the working mechanisms of hydrogels in those devices, and future prospects. Preparation methods are also important for obtaining a suitable hydrogel. This review discusses different methods of hydrogel preparation from the respective raw materials. Moreover, the mechanism by which gels act as a part of electronic devices is described.
由于其物理和化学性质以及刺激响应特性,凝胶和水凝胶在不同的应用领域中发挥着至关重要的作用。水凝胶的三维聚合物网络结构被认为是许多材料的替代品,如导体、普通薄膜、机器和机器人的组成部件等。凝胶的最新应用在于不同的设备,如传感器、致动器、柔性屏幕、触摸面板、柔性存储、太阳能电池、电池和电子皮肤。这篇综述文章阐述了使用凝胶的设备、研究进展、水凝胶在这些设备中的工作机制以及未来前景。制备方法对于获得合适的水凝胶也很重要。本文综述讨论了从各自原材料制备水凝胶的不同方法。此外,还描述了凝胶作为电子设备一部分的作用机制。