Rattling-Induced Ultralow Lattice Thermal Conductivity Leads to High Thermoelectric Performance in GaAgSnSe4 and InAgGeSe4

被引:0
|
作者
Mandal, Sampad [1 ]
Sarkar, Pranab [1 ]
机构
[1] Visva Bharati, Dept Chem, Santini Ketan 731235, India
来源
ACS APPLIED ENERGY MATERIALS | 2024年 / 7卷 / 19期
关键词
rattling effect; lattice anharmonicity; acoustic-opticalphonon coupling; ultralow lattice thermal conductivity; thermoelectric figure of merit; TRANSPORT; TELLURIDES; DYNAMICS;
D O I
10.1021/acsaem.4c02322
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The thermal and electronic transport properties of Ag-based quaternary compounds, GaAgSnSe4 and InAgGeSe4, have been explored by using density functional theory and the Boltzmann transport equation. Both the compounds exhibit ultralow lattice thermal conductivities (kappa(l)) that originate from the anharmonicity induced by the rattling effects of the loosely bound Ag atoms in their crystals. The lattice thermal conductivities (kappa(l,xx(yy)), kappa(l,zz)) at 300 and 800 K are (0.19, 0.23) and (0.07, 0.08) W m(-1) K-1, respectively, for GaAgSnSe4, and those for InAgGeSe4 are (1.07, 0.97) and (0.40, 0.36) W m(-1) K-1, respectively. Due to the huge and steep total density of states (TDOS) at the band edges in the vicinity of the Fermi level, both direct band gap semiconductors exhibit high Seebeck coefficients (S) with optimum electrical (sigma) and electronic thermal conductivities (kappa(e)). We have projected an outstanding figure of merit (ZT) for both the p-type and n-type of the two compounds. For the p-type and n-type GaAgSnSe4, the maximum ZT estimated at 800 K along the (x(y), z)-directions are (2.74, 2.35) and (2.51, 1.84), respectively; for the p-type and n-type InAgGeSe4, the values are (1.31, 1.20) and (0.94, 0.90), respectively. Our study suggests both GaAgSnSe4 and InAgGeSe4 as prospective thermoelectric materials.
引用
收藏
页码:9023 / 9033
页数:11
相关论文
共 50 条
  • [41] First-principles study on ultralow lattice thermal conductivity in HfGeTe4
    Zhou, Xiu-Feng
    Zhou, Jian
    MODERN PHYSICS LETTERS B, 2022, 36 (23):
  • [42] Phonon Spectra and Lattice Thermal Conductivity of High-Performance Thermoelectric SnSe
    Filanovich, A. N.
    Povzner, A. A.
    JETP LETTERS, 2024, 120 (03) : 195 - 198
  • [43] High Thermoelectric Performance of SnTe-MnSe with Low Lattice Thermal Conductivity
    Wang, Yaning
    Yuan, Yi
    Yang, Ruiming
    Li, Meiling
    Liu, Tie
    Tahashi, Masahiro
    Wang, Qiang
    ACS APPLIED ENERGY MATERIALS, 2023, 7 (01) : 145 - 153
  • [44] Ultralow lattice thermal conductivity and thermoelectric performance of twisted Graphene/Boron Nitride heterostructure through strain engineering
    Gupta, Neelam
    Rani, Shivani
    Kumari, Puja
    Ahuja, Rajeev
    Ray, Soumya Jyoti
    CARBON, 2023, 215
  • [45] Ultralow lattice thermal conductivity and high thermoelectric performance of the WS2/WTe2 van der Waals superlattice
    Hu, Rui
    Zhou, Zizhen
    Sheng, Caiyu
    Han, Shihao
    Yuan, Hongmei
    Liu, Huijun
    PHYSICS LETTERS A, 2022, 430
  • [46] Ultralow lattice thermal conductivity and dramatically enhanced thermoelectric properties of monolayer InSe induced by an external electric field
    Chang, Zheng
    Yuan, Kunpeng
    Sun, Zhehao
    Zhang, Xiaoliang
    Gao, Yufei
    Qin, Guangzhao
    Tang, Dawei
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2021, 23 (24) : 13633 - 13646
  • [47] Ultralow lattice thermal conductivity of chalcogenide perovskite CaZrSe3 contributes to high thermoelectric figure of merit
    Eric Osei-Agyemang
    Challen Enninful Adu
    Ganesh Balasubramanian
    npj Computational Materials, 5
  • [48] Ultralow lattice thermal conductivity of chalcogenide perovskite CaZrSe3 contributes to high thermoelectric figure of merit
    Osei-Agyemang, Eric
    Adu, Challen Enninful
    Balasubramanian, Ganesh
    NPJ COMPUTATIONAL MATERIALS, 2019, 5 (1)
  • [49] High thermoelectric performance in BaAgYTe3 via low lattice thermal conductivity induced by bonding heterogeneity
    Pal, Koushik
    Xia, Yi
    He, Jiangang
    Wolverton, C.
    PHYSICAL REVIEW MATERIALS, 2019, 3 (08)
  • [50] Antibonding induced anharmonicity leading to ultralow lattice thermal conductivity and extraordinary thermoelectric performance in CsK2X (X = Sb, Bi)
    Yuan, Kunpeng
    Zhang, Xiaoliang
    Chang, Zheng
    Tang, Dawei
    Hu, Ming
    JOURNAL OF MATERIALS CHEMISTRY C, 2022, 10 (42) : 15822 - 15832