Chemical Bonding Tuned Lattice Anharmonicity Leads to a High Thermoelectric Performance in Cubic AgSnSbTe3

被引:14
|
作者
Sarkar, Debattam [1 ,2 ]
Dolui, Kapildeb [3 ]
Taneja, Vaishali [1 ,2 ]
Ahad, Abdul [1 ,2 ]
Dutta, Moinak [1 ,2 ]
Manjunatha, S. O. [1 ,2 ]
Swain, Diptikanta [4 ]
Biswas, Kanishka [1 ,2 ]
机构
[1] Jawaharlal Nehru Ctr Adv Sci Res JNCASR, Int Ctr Mat Sci, New Chem Unit, Jakkur PO, Bangalore 560064, India
[2] Jawaharlal Nehru Ctr Adv Sci Res JNCASR, Sch Adv Mat, Jakkur PO, Bangalore 560064, India
[3] Univ Cambridge, Dept Mat Sci & Met, 27 Charles Babbage Rd, Cambridge CB3 0FS, England
[4] Inst Chem Technol IndianOil, Odisha Campus, Bhubaneswar 751013, India
关键词
Anharmonicity; Antibonding States; Metavalent Bonding; Thermal Conductivity; Thermoelectrics; ULTRALOW THERMAL-CONDUCTIVITY; TOTAL-ENERGY CALCULATIONS; SEMICONDUCTORS; TEMPERATURE; ORIGIN;
D O I
10.1002/anie.202308515
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Comprehension of chemical bonding and its intertwined relation with charge carriers and heat propagation through a crystal lattice is imperative to design compounds for thermoelectric energy conversion. Here, we report the synthesis of large single crystal of new p-type cubic AgSnSbTe3 which shows an innately ultra-low lattice thermal conductivity (& kappa;(lat)) of 0.47-0.27 Wm(-1) K-1 and a high electrical conductivity (1238 - 800 S cm(-1)) in the temperature range 294-723 K. We investigated the origin of the low & kappa;(lat) by analysing the nature of the chemical bonding and its crystal structure. The interaction between Sn(5 s)/Ag(4d) and Te(5p) orbitals was found to generate antibonding states just below the Fermi level in the electronic band structure, resulting in a softening of the lattice in AgSnSbTe3. Furthermore, the compound exhibits metavalent bonding which provides highly polarizable bonds with a strong lattice anharmonicity while maintaining the superior electrical conductivity. The electronic band structure exhibits nearly degenerate valence-band maxima that help to achieve a high Seebeck coefficient throughout the measured temperature range and, as a result, the maximum thermoelectric figure of merit reaches to & AP;1.2 at 661 K in pristine single crystal of AgSnSbTe3.
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页数:9
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