Ma Zhong, Shi Wen, Yan Ke, Pan Lijia, Yu Guihua
Collaborative Innovation Center of Advanced Microstructures , Jiangsu Provincial Key Laboratory of Photonic and Electronic Materials , School of Electronic Science and Engineering , Nanjing University , 210093 Nanjing , China . Email:
Materials Science and Engineering Program , Department of Mechanical Engineering , The University of Texas at Austin , Austin , Texas 78712 , USA . Email:
Chem Sci. 2019 May 29;10(25):6232-6244. doi: 10.1039/c9sc02033k. eCollection 2019 Jul 7.
Conductive polymer hydrogels are emerging as an advanced electronic platform for sensors by synergizing the advantageous features of soft materials and organic conductors. Doping provides a simple yet effective methodology for the synthesis and modulation of conductive polymer hydrogels. By utilizing different dopants and levels of doping, conductive polymer hydrogels show a highly flexible tunability for controllable electronic properties, microstructures, and structure-derived mechanical properties. By rationally tailoring these properties, conductive polymer hydrogels are engineered to allow sensitive responses to external stimuli and exhibit the potential for application in various sensor technologies. The doping methods for the controllable structures and tunable properties of conductive polymer hydrogels are beneficial to improving a variety of sensing performances including sensitivity, stability, selectivity, and new functions. With this perspective, we review recent progress in the synthesis and performance of conductive polymer hydrogels with an emphasis on the utilization of doping principles. Several prototype sensor designs based on conductive polymer hydrogels are presented. Furthermore, the main challenges and future research are also discussed.
通过将软材料和有机导体的优势特性相结合,导电聚合物水凝胶正成为一种先进的传感器电子平台。掺杂为导电聚合物水凝胶的合成和调制提供了一种简单而有效的方法。通过使用不同的掺杂剂和掺杂水平,导电聚合物水凝胶在可控电子特性、微观结构以及结构衍生的机械性能方面表现出高度灵活的可调性。通过合理调整这些特性,导电聚合物水凝胶被设计成能够对外部刺激做出灵敏响应,并展现出在各种传感器技术中的应用潜力。导电聚合物水凝胶可控结构和可调特性的掺杂方法有利于提高包括灵敏度、稳定性、选择性和新功能在内的各种传感性能。基于这一观点,我们综述了导电聚合物水凝胶在合成和性能方面的最新进展,重点是掺杂原理的应用。还介绍了几种基于导电聚合物水凝胶的原型传感器设计。此外,还讨论了主要挑战和未来研究方向。