2022Journal of Materials Chemistry CRequires access

Modeling the tunable thermal conductivity of intercalated layered materials with three-directional anisotropic phonon dispersion and relaxation times

Chengjie Wang, Maogang He, Xiangyang Liu, Jonathan A. Malen

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Abstract

The three-directional anisotropic dispersion and an anisotropic relaxation time relation are developed to investigate the thermal conductivity of intercalated layered materials, paving the way for the design of TE devices with high TE efficiency.

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What this paper is about

The three-directional anisotropic dispersion and an anisotropic relaxation time relation are developed to investigate the thermal conductivity of intercalated layered materials, paving the way for the design of TE devices with high TE efficiency.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The three-directional anisotropic dispersion and an anisotropic relaxation time relation are developed to investigate the thermal conductivity of intercalated layered materials, paving the way for the design of TE devices with high TE efficiency.

Key concepts: Materials science, Anisotropy, Phonon, Thermal conductivity, Dispersion (optics), Dispersion relation, Condensed matter physics, Relaxation (psychology)

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