Li Zhiwei, Xu Yinghong, Wu Langyuan, An Yufeng, Sun Yao, Meng Tingting, Dou Hui, Xuan Yimin, Zhang Xiaogang
Jiangsu Key Laboratory of Electrochemical Energy Storage Technologies, College of Material Science and Engineering, Nanjing University of Aeronautics and Astronautics, 211106, Nanjing, China.
School of Energy and Power Engineering, Nanjing University of Aeronautics and Astronautics, 210016, Nanjing, P. R. China.
Nat Commun. 2022 Jan 10;13(1):132. doi: 10.1038/s41467-021-27755-x.
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-PC) and stripping/plating behaviour of Zn anode. Based on this strategy, an impressively high thermopower of ~12.5 mV K 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.
将环境中的低品位热能转化为电能,对于缓解能源危机和调整能源结构具有巨大的可持续性。然而,当使用半导体时,热可充电设备通常存在转换效率低下的问题。打破热电系统的常规,我们提出并展示了一种新型锌离子热充电电池,该电池通过插入型阴极(VO-PC)的热萃取/插入和热扩散过程以及锌阳极的剥离/电镀行为,从低品位热能中发电。基于此策略,可获得高达约12.5 mV K的热电势和1.2 mW的出色输出功率。此外,在45 K的温差下,实现了0.95%(卡诺效率的7.25%)的高热到电流转换效率。这项工作展示了非凡的能量转换效率和充足的能量存储,将为构建具有吸引人特性的热电装置铺平道路,以实现低品位热能的高附加值利用。