热电发电机
材料科学
余热
能量转换效率
阳极
热电效应
卡诺循环
能量转换
储能
核工程
工作(物理)
电
阴极
光电子学
热能储存
电气工程
功率(物理)
热力学
化学
热交换器
电极
物理
工程类
物理化学
作者
Zhiwei Li,Yinghong Xu,Langyuan Wu,Yufeng An,Yao Sun,Tingting Meng,Hui Dou,Yimin Xuan,Xiaogang Zhang
标识
DOI:10.1038/s41467-021-27755-x
摘要
Abstract Converting low-grade heat from environment into electricity shows great sustainability for mitigating the energy crisis and adjusting energy configurations. However, thermally rechargeable devices typically suffer from poor conversion efficiency when a semiconductor is employed. Breaking the convention of thermoelectric systems, we propose and demonstrate a new zinc ion thermal charging cell to generate electricity from low-grade heat via the thermo-extraction/insertion and thermodiffusion processes of insertion-type cathode (VO 2 -PC) and stripping/plating behaviour of Zn anode. Based on this strategy, an impressively high thermopower of ~12.5 mV K −1 and an excellent output power of 1.2 mW can be obtained. In addition, a high heat-to-current conversion efficiency of 0.95% (7.25% of Carnot efficiency) is achieved with a temperature difference of 45 K. This work, which demonstrates extraordinary energy conversion efficiency and adequate energy storage, will pave the way towards the construction of thermoelectric setups with attractive properties for high value-added utilization of low-grade heat.
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