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Lattice dynamics of the tin sulphides SnS2, SnS and Sn2S3: vibrational spectra and thermal transport.


ABSTRACT: We present an in-depth first-principles study of the lattice dynamics of the tin sulphides SnS2, Pnma and ?-cubic SnS and Sn2S3. An analysis of the harmonic phonon dispersion and vibrational density of states reveals phonon bandgaps between low- and high-frequency modes consisting of Sn and S motion, respectively, and evidences a bond-strength hierarchy in the low-dimensional SnS2, Pnma SnS and Sn2S3 crystals. We model and perform a complete characterisation of the infrared and Raman spectra, including temperature-dependent anharmonic linewidths calculated using many-body perturbation theory. We illustrate how vibrational spectroscopy could be used to identify and characterise phase impurities in tin sulphide samples. The spectral linewidths are used to model the thermal transport, and the calculations indicate that the low-dimensional Sn2S3 has a very low lattice thermal conductivity, potentially giving it superior performance to SnS as a candidate thermoelectric material.

SUBMITTER: Skelton JM 

PROVIDER: S-EPMC5450010 | biostudies-literature | 2017 May

REPOSITORIES: biostudies-literature

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Lattice dynamics of the tin sulphides SnS<sub>2</sub>, SnS and Sn<sub>2</sub>S<sub>3</sub>: vibrational spectra and thermal transport.

Skelton Jonathan M JM   Burton Lee A LA   Jackson Adam J AJ   Oba Fumiyasu F   Parker Stephen C SC   Walsh Aron A  

Physical chemistry chemical physics : PCCP 20170501 19


We present an in-depth first-principles study of the lattice dynamics of the tin sulphides SnS<sub>2</sub>, Pnma and π-cubic SnS and Sn<sub>2</sub>S<sub>3</sub>. An analysis of the harmonic phonon dispersion and vibrational density of states reveals phonon bandgaps between low- and high-frequency modes consisting of Sn and S motion, respectively, and evidences a bond-strength hierarchy in the low-dimensional SnS<sub>2</sub>, Pnma SnS and Sn<sub>2</sub>S<sub>3</sub> crystals. We model and perform  ...[more]

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