Yang Zhe, Dang Fei, Zhang Chen, Sun Shuocheng, Zhao Wei, Li Ximeng, Liu Yilun, Chen Xi
School of Civil Engineering , Luoyang Institute of Science and Technology , Luoyang 471023 , China.
School of Chemical Engineering, Institute of Energy and Chemical Engineering Shaanxi , Northwest University , Xi'an 710069 , China.
Langmuir. 2019 Jun 18;35(24):7713-7719. doi: 10.1021/acs.langmuir.9b00646. Epub 2019 Jun 4.
In this work, a closed thermoelectric cell based on a nanoporous graphene electrode is developed to convert low-grade thermal energy to electric energy. The thermoelectric cell consists of two nanoporous graphene electrodes in contact with the hot and cold ends, respectively, encapsulated in a KCl electrolyte, and the energy is harvested from the redistribution of the electric double layer (EDL) of the graphene electrodes under different temperatures. Because of the large specific surface and conductivity of nanoporous graphene electrodes, the electric voltage is 168.91 mV with the hot-end temperature of 61 °C and cold-end temperature of 26 °C, corresponding to the thermoelectric coefficient of 4.54 mV·°C, which is much larger than that of the conventional thermoelectric generator. The specific power output achieves 1.38 mW·g and is also significantly larger than the previous EDL-based thermoelectric generator. System performance with the concentration of the KCl electrolyte is examined. The proposed thermoelectric cell can harvest low-grade waste heat from the ambient environment, which may have potential applications in energy supply, wireless powered devices, outdoor survival, and so forth.
在这项工作中,开发了一种基于纳米多孔石墨烯电极的封闭式热电池,用于将低品位热能转化为电能。该热电池由两个分别与热端和冷端接触的纳米多孔石墨烯电极组成,封装在氯化钾电解质中,能量是从不同温度下石墨烯电极的双电层(EDL)的重新分布中获取的。由于纳米多孔石墨烯电极具有较大的比表面积和导电性,在热端温度为61℃、冷端温度为26℃时,产生的电压为168.91mV,对应的热电系数为4.54mV·℃,这比传统的热发电机大得多。比功率输出达到1.38mW·g,也明显高于以前基于双电层的热发电机。研究了氯化钾电解质浓度对系统性能的影响。所提出的热电池可以从周围环境中收集低品位废热,这在能源供应、无线供电设备、户外生存等方面可能具有潜在应用。