Liu Shan, Bai Shulin, Wen Yi, Lou Jing, Jiang Yongzhen, Zhu Yingcai, Liu Dongrui, Li Yichen, Shi Haonan, Liu Shibo, Wang Lei, Zheng Junqing, Zhao Zhe, Qin Yongxin, Liu ZhongKai, Gao Xiang, Qin Bingchao, Chang Cheng, Chang Chao, Zhao Li-Dong
Center for Bioinspired Science and Technology, Hangzhou International Innovation Institute, Beihang University, Hangzhou, China.
School of Materials Science and Engineering, Beihang University, Beijing, China.
Science. 2025 Jan 10;387(6730):202-208. doi: 10.1126/science.ado1133. Epub 2025 Jan 9.
Thermoelectrics have been limited by the scarcity of their constituent elements, especially telluride. The earth-abundant, wide-bandgap ( ≈ 46 ) tin sulfide (SnS) has shown promising performance in its crystal form. We improved the thermoelectric efficiency in SnS crystals by promoting the convergence of energy and momentum of four valance bands, termed quadruple-band synglisis. We introduced more Sn vacancies to activate quadruple-band synglisis and facilitate carrier transport by inducing SnS in selenium (Se)-alloyed SnS, leading to a high dimensionless figure of merit () of ~1.0 at 300 kelvin and an average of ~1.3 at 300 to 773 kelvin in p-type SnS crystals. We further obtained an experimental efficiency of ~6.5%, and our fabricated cooler demonstrated a maximum cooling temperature difference of ~48.4 kelvin at 353 kelvin. Our observations should draw interest to earth-abundant SnS crystals for applications of waste-heat recovery and thermoelectric cooling.
热电材料一直受到其组成元素稀缺性的限制,尤其是碲化物。储量丰富、宽带隙(约46)的硫化锡(SnS)在其晶体形式中已展现出有前景的性能。我们通过促进四个价带的能量和动量收敛(称为四能带协同作用)提高了SnS晶体的热电效率。我们引入更多的Sn空位以激活四能带协同作用,并通过在硒(Se)合金化的SnS中诱导SnS来促进载流子传输,从而在300开尔文时使p型SnS晶体的无量纲品质因数(ZT)高达约1.0,在300至773开尔文时平均ZT约为1.3。我们进一步获得了约6.5%的实验效率,并且我们制造的冷却器在353开尔文时展示了约48.4开尔文的最大冷却温差。我们的观察结果应会引起人们对储量丰富的SnS晶体在废热回收和热电冷却应用方面的兴趣。