Low Thermal Conductivity and Interface Thermal Conductance in SnS2
Saheb Karak (1), Jayanta Bera (2), Suvodeep Paul (1), Satyajit Sahu, (2), and Surajit Saha (1) ((1) Department of Physics, Indian Institute of, Science Education, Research, Bhopal, India (2) Department of Physics,, Indian Institute of Technology Jodhpur, Jodhpur, India)

TL;DR
This study measures the low in-plane lattice thermal conductivity and interface thermal conductance of monolayer SnS2, supported by DFT calculations, revealing its potential for thermoelectric applications due to its thermal properties.
Contribution
The paper provides the first experimental measurements of thermal conductivity and interfacial conductance of SnS2, supported by theoretical DFT analysis, highlighting its low thermal conductivity for thermoelectric use.
Findings
In-plane thermal conductivity of SnS2 is approximately 3.20 W/m·K.
Interfacial thermal conductance of SnS2 on SiO2/Si is about 0.53 MW/m²·K.
Thermal properties depend on the thickness of SnS2 flakes.
Abstract
After the discovery of graphene, there have been tremendous efforts in exploring various layered two-dimensional (2D) materials for their potential applications in electronics, optoelectronics, as well as energy conversion and storage. One of such 2D materials, SnS2, which is earth abundant, low in toxicity, and cost effective, has been reported to show a high on/off current ratio, fast photodetection, and high optical absorption, thus making this material promising for device applications. Further, a few recent theoretical reports predict high electrical conductivity and Seebeck coefficient in its bulk counterparts. However, the thermal properties of SnS2 have not yet been properly explored, which are important to materialize many of its potential applications. Here, we report the thermal properties of SnS2 measured using the optothermal method and supported by density functional…
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