Enhanced Thermoelectric Performance in Earth-Abundant Bi2S3 by Band Structure Modification Using CuCl Doping

被引:0
|
作者
Anjum, Farheen [1 ]
Bhattacharjee, Dipanwita [2 ]
Bhattacharya, Amrita [2 ]
Maiti, Tanmoy [1 ]
机构
[1] IIT Kanpur, Dept Mat Sci & Engn, Plasmon & Perovskites Lab, Kanpur 208016, Uttar Pradesh, India
[2] Indian Inst Technol, Dept Met Engn & Mat Sci, Ab Initio Computat Mat Simulat Lab, Mumbai 400076, Maharashtra, India
关键词
Bi2S3; CuCl; earth-abundant; thermoelectrics; BISMUTH SULFIDES KBI6.33S10; BULK MATERIALS; PBTE; CONDUCTIVITY; TEMPERATURE; TRANSPORT; CHLORIDE; FIGURE; MERIT; BI;
D O I
10.1002/smll.202412711
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Bismuth sulfide has garnered considerable attention in recent years for thermoelectric applications because it comprises of earth-abundant, low-cost sulfur. However, it has a large bandgap causing low electrical conductivity compared to other chalcogenides, limiting its thermoelectric performance. In the present work, using a small concentration of CuCl doping, 9-times ZT-enhancement is demonstrated in Bi2S3 attaining a maximum ZT approximate to 1.02 at 723 K. It is achieved primarily by improving electron transport behavior in Bi2S3 as evident from unprecedented 29-times increase in electrical conductivity attained in CuCl doped Bi2S3. Using density funtional theory (DFT) calculation, it is shown that Cu occupying the interstitials in Bi2S3 indeed creates a mid-gap state, and modifies its band structure by generating multiple valleys in conduction band minima. Hence, a one-order of magnitude increase in electron concentration is observed in CuCl-doped Bi2S3. Moreover, the presence of nano-scale Cu-rich region along with nano-size grains in doped Bi2S3 as detected by high-resolution transmission electron microscopy (HRTEM) facilitates enhanced phonon scattering leading to suppressed lattice thermal conductivity. A prototype of a 4-legged thermoelectric power generator (TEG) has been fabricated demonstrating a 3 mW power output with a power density of 7500 mW m(-2), which potentially opens up a new avenue of making high-performance TEG made of non-toxic, low-cost, earth-abundant elements.
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页数:12
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