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Development of conductive hydrogels: from design mechanisms to frontier applications

Development of conductive hydrogels: from design mechanisms to frontier applications

作     者:Yang Hong Zening Lin Zirong Luo Tao Jiang Jianzhong Shang Yun Yang Yang Hong;Zening Lin;Zirong Luo;Tao Jiang;Jianzhong Shang;Yun Yang

作者机构:College of Intelligence Science and TechnologyNational University of Defense TechnologyChangsha 410073China 

基  金:supported by the Research Project Funding of National University of Defense Technology of China (No.ZK19-33) the National Postdoctoral International Exchange Program Funding for Incoming Postdoctoral Students (Postdoctoral No.48127) the Science and Technology Innovation Program of Hunan Province (No.2020RC2036) the National Natural Science Foundation of China (Nos.52105039 and 52175069) 

出 版 物:《Bio-Design and Manufacturing》 (生物设计与制造(英文))

年 卷 期:2022年第5卷第4期

页      码:729-756页

摘      要:Owing to their excellent mechanical flexibility, electrical conductivity, and biocompatibility, conductive hydrogels(CHs) are widely used in the fields of energy and power, and biomedical technology. To arrive at a better understanding of the design methods and development trends of CHs, this paper summarizes and analyzes related research published in recent years. First,we describe the properties and characteristics of CHs. Using Scopus, the world’s largest abstract and citation database, we conducted a quantitative analysis of the related literature from the past 15 years and summarized development trends in the field of CHs. Second, we describe the types of CH network crosslinking and basic functional design methods and summarize the three-dimensional(3D) structure-forming methods and conductive performance tests of CHs. In addition, we introduce applications of CHs in the fields of energy and power, biomedical technology, and others. Lastly, we discuss several problems in current CH research and introduce some prospects for the future development of CHs.

主 题 词:Conductive hydrogels Crosslinking mechanism Design methods 3D structure-forming methods Conductive hydrogel applications 

学科分类:081702[081702] 08[工学] 0817[工学-轻工类] 080501[080501] 0805[工学-能源动力学] 080502[080502] 

核心收录:

D O I:10.1007/s42242-022-00208-0

馆 藏 号:203114608...

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