Achieving High Thermoelectric Performance in ZnSe-Doped CuGaTe2 by Optimizing the Carrier Concentration and Reducing Thermal Conductivity

被引:0
|
作者
Luo, Sitong [1 ]
Zhang, Zipei [1 ]
Yu, Lu [1 ]
Wei, Sitong [1 ]
Ji, Zhen [1 ]
Liang, Jingxuan [1 ]
Wei, Zhibo [1 ]
Song, Weiyu [2 ]
Zheng, Shuqi [1 ]
机构
[1] China Univ Petr, Coll New Energy & Mat, Beijing 102249, Peoples R China
[2] China Univ Petr, Coll Sci, Beijing 102249, Peoples R China
关键词
thermoelectric; CuGaTe2; carrierconcentration; thermal conductivity; ZnSe; TRANSPORT PERFORMANCE; POINT-DEFECTS; ENHANCEMENT; SEMICONDUCTORS; CUINTE2;
D O I
10.1021/acsami.4c00455
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The CuGaTe2 thermoelectric material has garnered widespread attention as an inexpensive and nontoxic material for mid-temperature thermoelectric applications. However, its development has been hindered by its low intrinsic carrier concentration and high thermal conductivity. This study investigates the band structure and thermoelectric properties of (CuGaTe2)(1-x) (ZnSe)(x) (x = 0, 0.25%, 0.5%, 1%, 1.5%, and 2%). The research revealed that the incorporation of Zn and Se atoms enhanced the level of band degeneracy and electron density of states near Fermi level, significantly raising carrier concentration through the formation of Zn-GaZnGa- point defects. Simultaneously, when the doping content reached 1.5%, the ZnTe second phase emerged, collaborating with point defects and high-density dislocations, effectively scattering phonons and substantially reducing lattice thermal conductivity. Therefore, introducing ZnSe can simultaneously optimize the material's electrical and thermal transport properties. The (CuGaTe2)(0.985)(ZnSe)(0.015) sample reaches peak ZT of 1.32 at 823 K, representing a 159% increase compared to pure CuGaTe2.
引用
收藏
页码:16253 / 16260
页数:8
相关论文
共 50 条
  • [1] Defect engineering synergistically modulates power factor and thermal conductivity of CuGaTe2 for ultra-high thermoelectric performance
    Zhang, Zipei
    Li, Wenhao
    Yu, Lu
    Wei, Sitong
    Wei, Shikai
    Ji, Zhen
    Song, Weiyu
    Zheng, Shuqi
    JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2022, 128 : 213 - 220
  • [2] Optimization of thermoelectric transport performance of nickel-doped CuGaTe2
    Huang Lu-Lu
    Zhang Jian
    Kong Yuan
    Li Di
    Xin Hong-Xing
    Qin Xiao-Ping
    ACTA PHYSICA SINICA, 2021, 70 (20)
  • [3] Defect engineering synergistically modulates power factor and thermal conductivity of CuGaTe2 for ultra-high thermoelectric performance
    Zipei Zhang
    Wenhao Li
    Lu Yu
    Sitong Wei
    Shikai Wei
    Zhen Ji
    Weiyu Song
    Shuqi Zheng
    Journal of Materials Science & Technology, 2022, 128 (33) : 213 - 220
  • [4] Manipulation of the crystal structure defects: An alternative route to the reduction in lattice thermal conductivity and improvement in thermoelectric performance of CuGaTe2
    Wu, Wenchang
    Li, Yapeng
    Du, Zhengliang
    Meng, Qingsen
    Sun, Zheng
    Ren, Wei
    Cui, Jiaolin
    APPLIED PHYSICS LETTERS, 2013, 103 (01)
  • [5] Realizing High Thermoelectric Performance in the ZnTe-Alloyed CuGaTe2 through Band Engineering
    Zhang, Zipei
    Zheng, Shuqi
    Li, Juan
    Wang, Boyi
    Yue, Luo
    Wu, Yue
    Dong, Ximeng
    Chen, Liqiang
    Gao, Lei
    Lu, Guiwu
    ACS APPLIED ENERGY MATERIALS, 2020, 3 (12): : 12400 - 12406
  • [6] Computational prediction of high thermoelectric performance in p-type CuGaTe2 with a first-principles study
    Chen, Chaoran
    Zhang, Peng
    Yue, Luo
    Li, Juan
    Fang, Teng
    Zheng, Shuqi
    Lu, Guiwu
    COMPUTATIONAL MATERIALS SCIENCE, 2019, 158 : 369 - 375
  • [7] Achieving high-performance n-type PbTe via synergistically optimizing effective mass and carrier concentration and suppressing lattice thermal conductivity
    Liu, Hang-Tian
    Sun, Qiang
    Zhong, Yan
    Xia, Cheng-Liang
    Chen, Yue
    Chen, Zhi-Gang
    Ang, Ran
    Chemical Engineering Journal, 2022, 428
  • [8] Achieving high-performance n-type PbTe via synergistically optimizing effective mass and carrier concentration and suppressing lattice thermal conductivity
    Liu, Hang-Tian
    Sun, Qiang
    Zhong, Yan
    Xia, Cheng-Liang
    Chen, Yue
    Chen, Zhi-Gang
    Ang, Ran
    CHEMICAL ENGINEERING JOURNAL, 2022, 428
  • [9] Optimizing carrier concentration for enhanced thermoelectric performance in AgSbS2 monolayer
    Mathew, Stephen Shaiju
    Sangeeta, Rajesh
    Kumar, Rajesh
    Singh, Mukhtiyar
    Kashyap, Manish K.
    IONICS, 2024, : 8647 - 8657
  • [10] Deep defect level engineering: a strategy of optimizing the carrier concentration for high thermoelectric performance
    Zhang, Qian
    Song, Qichen
    Wang, Xinyu
    Sun, Jingying
    Zhu, Qing
    Dahal, Keshab
    Lin, Xi
    Cao, Feng
    Zhou, Jiawei
    Chen, Shuo
    Chen, Gang
    Mao, Jun
    Ren, Zhifeng
    ENERGY & ENVIRONMENTAL SCIENCE, 2018, 11 (04) : 933 - 940