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铁掺杂硫化铜具有良好的稳定性和高热电性能。

Good stability and high thermoelectric performance of Fe doped CuS.

作者信息

Mao Tao, Qiu Pengfei, Liu Jin, Du Xiaolong, Hu Ping, Zhao Kunpeng, Ren Dudi, Shi Xun, Chen Lidong

机构信息

State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China.

State Key Laboratory of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Phys Chem Chem Phys. 2020 Apr 8;22(14):7374-7380. doi: 10.1039/d0cp00733a.

Abstract

Copper sulfides have attracted great attention recently in the thermoelectric community due to the liquid-like behavior of Cu ions. Among the numerous copper sulfides, digenite Cu1.80S has a poorer thermoelectric performance but better stability than the state-of-the-art binary copper sulfide Cu1.97S. In this study, good stability and high thermoelectric performance were simultaneously obtained in Fe-doped Cu1.80S. Because Fe ions will not form a concentration gradient under an external field to change the critical voltage, Fe-doped Cu1.80S samples inherit the good stability of the pristine Cu1.80S. The critical voltage for Cu1.80Fe0.064S is 0.16 V at 750 K, which has been the largest value reported so far. Likewise, the Fe dopants can significantly improve the thermoelectric performance by suppressing the too high electrical conductivity of Cu1.80S. The peak dimensionless figure of merit (zT) for Cu1.80Fe0.064S is around 0.8 at 750 K, about four times that of Cu1.80S. The average zT for Cu1.80Fe0.064S is 0.40 in 300-750 K, which is amongst the highest values in reported thermoelectric sulfides. Combining the good stability and high thermoelectric performance, the present Cu1.80Fe0.064S has great potential to be used in the application of waste heat harvesting in the middle temperature range.

摘要

由于铜离子呈现出类似液体的行为,硫化铜最近在热电领域引起了极大关注。在众多硫化铜中,辉铜矿Cu1.80S的热电性能比最先进的二元硫化铜Cu1.97S差,但稳定性更好。在本研究中,通过铁掺杂的Cu1.80S同时获得了良好的稳定性和高热电性能。由于铁离子在外部场作用下不会形成浓度梯度来改变临界电压,铁掺杂的Cu1.80S样品继承了原始Cu1.80S的良好稳定性。Cu1.80Fe0.064S在750 K时的临界电压为0.16 V,这是迄今为止报道的最大值。同样,铁掺杂剂可以通过抑制Cu1.80S过高的电导率来显著提高热电性能。Cu1.80Fe0.064S在750 K时的峰值无量纲优值(zT)约为0.8,约为Cu1.80S的四倍。Cu1.80Fe0.064S在300 - 750 K范围内的平均zT为0.40,这是已报道的热电硫化物中的最高值之一。结合良好的稳定性和高热电性能,目前的Cu1.80Fe0.064S在中温范围的废热收集应用中具有巨大潜力。

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