Wu Xun, Gao Naiwei, Jia Hanyu, Wang Yapei
Department of Chemistry, Renmin University of China, Beijing, 100872, P. R. China.
School of Materials Science and Engineering, The Key Laboratory of Material Processing and Mold of Ministry of Education, Henan Key Laboratory of Advanced Nylon Materials and Application, Zhengzhou University, Zhengzhou, 450001, P. R. China.
Chem Asian J. 2021 Jan 18;16(2):129-141. doi: 10.1002/asia.202001331. Epub 2020 Dec 22.
Thermoelectric materials represent a new paradigm for harvesting low-grade heat, which would otherwise be dissipated to the environment uselessly. Relative to conventional thermoelectric materials generally composed of semiconductors or semi-metals, ionic thermoelectric materials are rising as an alternative choice which exhibit higher Seebeck coefficient and lower thermal conductivity. The ionic thermoelectric materials own a completely different thermoelectric conversion mechanism, in which the ions do not enter the electrode but rearrange on the electrode surface to generate a voltage difference between the hot and cold electrodes. This unique character has inspired worldwide interests on the design of ionic-type thermoelectric converters with attractive advantages of high flexibility, low cost, limited environmental pollution, and self-healing capability. Referring to the categories of ionic thermoelectric conversion, some representative ionic thermoelectric materials with their respective characteristics are summarized in this minireview. In addition, examples of applying ionic thermoelectric materials in supercapacitors, wearable devices, and fire warning system are also discussed. Insight into the challenges for the further development of ionic thermoelectric materials is finally provided.
热电材料代表了一种收集低品位热量的新范例,否则这些热量将被无用地散发到环境中。相对于通常由半导体或半金属组成的传统热电材料,离子热电材料正在崛起成为一种替代选择,其具有更高的塞贝克系数和更低的热导率。离子热电材料拥有完全不同的热电转换机制,其中离子不会进入电极,而是在电极表面重新排列以在热电极和冷电极之间产生电压差。这一独特特性激发了全球对离子型热电转换器设计的兴趣,该转换器具有高灵活性、低成本、有限的环境污染和自愈能力等诱人优势。参照离子热电转换的类别,本综述总结了一些具有各自特性的代表性离子热电材料。此外,还讨论了离子热电材料在超级电容器、可穿戴设备和火灾预警系统中的应用实例。最后提供了对离子热电材料进一步发展面临挑战的见解。