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首页> 外文期刊>Chemical science >Bonding heterogeneity and lone pair induced anharmonicity resulted in ultralow thermal conductivity and promising thermoelectric properties in n-type AgPbBiSe3
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Bonding heterogeneity and lone pair induced anharmonicity resulted in ultralow thermal conductivity and promising thermoelectric properties in n-type AgPbBiSe3

机译:键合异质性和孤心诱导的Anharmonicity导致N型Agpbbise3中的超级导热率和有前途的热电性能3

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摘要

Efficiency in generation and utilization of energy is highly dependent on materials that have the ability to amplify or hinder thermal conduction processes. A comprehensive understanding of the relationship between chemical bonding and structure impacting lattice waves (phonons) is essential to furnish compounds with ultralow lattice thermal conductivity (k(lat)) for important applications such as thermoelectrics. Here, we demonstrate that the n-type rock-salt AgPbBiSe3 exhibits an ultra-low k(lat) of 0.5-0.4 W m(-1) K-1 in the 290-820 K temperature range. We present detailed analysis to uncover the fundamental origin of such a low kappa(lat). First-principles calculations augmented with low temperature heat capacity measurements and the experimentally determined synchrotron X-ray pair distribution function (PDF) reveal bonding heterogeneity within the lattice and lone pair induced lattice anharmonicity. Both of these factors enhance the phonon-phonon scattering, and are thereby responsible for the suppressed klat. Further optimization of the thermoelectric properties was performed by aliovalent halide doping, and a thermoelectric figure of merit (zT) of 0.8 at 814 K was achieved for AgPbBiSe2.97I0.03 which is remarkable among n-type Te free thermoelectrics.
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  • 来源
    《Chemical science》 |2019年第18期|共9页
  • 作者单位

    JNCASR New Chem Unit Jakkur PO Bangalore 560064 Karnataka India;

    JNCASR Theoret Sci Unit Jakkur PO Bangalore 560064 Karnataka India;

    JNCASR Theoret Sci Unit Jakkur PO Bangalore 560064 Karnataka India;

    JNCASR New Chem Unit Jakkur PO Bangalore 560064 Karnataka India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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