Literature DB >> 31680516

Large Thermal Conductivity Drops in the Diamondoid Lattice of CuFeS2 by Discordant Atom Doping.

Hongyao Xie1,2, Xianli Su1, Shiqiang Hao3, Cheng Zhang1, Zhengkai Zhang1, Wei Liu1, Yonggao Yan1, Christopher Wolverton3, Xinfeng Tang1, Mercouri G Kanatzidis2.   

Abstract

Doping in a lattice refers to the introduction of very small quantities of foreign atoms and has a generally small effect on decreasing the lattice thermal conductivity, unlike alloying which involves large fractions of other elements and strongly enhances point defect phonon scattering. Here, we report that, by alloying only 3% of In on the Cu sites of the diamond-like lattice of CuFeS2 chalcopyrite compound (Cu1-xInxFeS2, x = 0.03) has a disproportionally large effect in reducing the lattice thermal conductivity of the compound from 2.32 to 1.36 Wm-1K-1 at 630 K. We find that In is not fully ionized to +3 when on the Cu sublattice and exists mainly in the +1 oxidation state. The 5s2 lone pair of electrons of In+ makes this atom incompatible (referred to as discordant) with the tetrahedral geometry of the crystallographic site. This causes strong local bond distortions thereby softening the In-S and Cu-S chemical bonds and introducing localized low frequency vibrations. The latter couple with the base phonon frequencies of the CuFeS2 matrix enhancing the anharmonicity and decreasing the phonon velocity, and consequently the lattice thermal conductivity. The control material in which the In doping is on the Fe3+ site of the structure at the same doping level (and found in the site-compatible In3+ state), has a far smaller effect on the phonon scattering.

Entities:  

Year:  2019        PMID: 31680516     DOI: 10.1021/jacs.9b10983

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  2 in total

1.  Tin-Substituted Chalcopyrite: An n-Type Sulfide with Enhanced Thermoelectric Performance.

Authors:  Sahil Tippireddy; Feridoon Azough; Frances Towers Tompkins; Animesh Bhui; Robert Freer; Ricardo Grau-Crespo; Kanishka Biswas; Paz Vaqueiro; Anthony V Powell
Journal:  Chem Mater       Date:  2022-06-25       Impact factor: 10.508

2.  Structural Dynamics, Phonon Spectra and Thermal Transport in the Silicon Clathrates.

Authors:  Benxiang Wei; Joseph M Flitcroft; Jonathan M Skelton
Journal:  Molecules       Date:  2022-09-29       Impact factor: 4.927

  2 in total

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