3D Anisotropic Thermal Conductivity of Exfoliated Rhenium Disulfide.
basic_science · Level V
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- Record sourced from PubMed, PMID 28722239.
- Also identified by DOI 10.1002/adma.201700650.
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Abstract
ReS<sub>2</sub> represents a different class of 2D materials, which is characterized by low symmetry having 1D metallic chains within the planes and extremely weak interlayer bonding. Here, the thermal conductivity of single-crystalline ReS<sub>2</sub> in a distorted 1T phase is determined at room temperature for the in-plane directions parallel and perpendicular to the Re-chains, and the through-plane direction using time-domain thermoreflectance. ReS<sub>2</sub> is prepared in the form of flakes having thicknesses of 60-450 nm by micromechanical exfoliation, and their crystalline orientations are identified by polarized Raman spectroscopy. The in-plane thermal conductivity is higher along the Re-chains, (70 ± 18) W m<sup>-1</sup> K<sup>-1</sup> , as compared to transverse to the chains, (50 ± 13) W m<sup>-1</sup> K<sup>-1</sup> . As expected from the weak interlayer bonding, the through-plane thermal conductivity is the lowest observed to date for 2D materials, (0.55 ± 0.07) W m<sup>-1</sup> K<sup>-1</sup> , resulting in a remarkably high anisotropy of (130 ± 40) and (90 ± 30) for the two in-plane directions. The thermal conductivity and interface thermal conductance of ReS<sub>2</sub> are discussed relative to the other 2D materials.