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Earth-Abundant and Non-Toxic SiX (X = S, Se) Monolayers as Highly Efficient Thermoelectric Materials

Ji‐Hui YangDepartment of Materials Science and Nanoengineering, Rice University, Houston, Texas 77005, United StatesQinghong YuanDepartment of Materials Science and Nanoengineering, Rice University, Houston, Texas 77005, United StatesHui‐Xiong DengState Key Laboratory for Superlattices and Microstructures, Institute of Semiconductors, Chinese Academy of Sciences, P.O. Box 912, Beijing 100083, ChinaSu‐Huai WeiBeijing Computational Science Research Center, Beijing 100094, ChinaBoris I. YakobsonDepartment of Materials Science and Nanoengineering, Rice University, Houston, Texas 77005, United States
2016en
ABI

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Current thermoelectric (TE) materials often have low performance or contain less abundant and/or toxic elements, thus limiting their large-scale applications. Therefore, new TE materials with high efficiency and low cost are strongly desirable. Here we demonstrate that SiS and SiSe monolayers made from nontoxic and earth-abundant elements intrinsically have low thermal conductivities arising from their low-frequency optical phonon branches with large overlaps with acoustic phonon modes, which is similar to the state-of-the-art experimentally demonstrated material SnSe with a layered structure. Together with high thermal power factors due to their two-dimensional nature, they show promising TE performances with large figure of merit (ZT) values exceeding 1 or 2 over a wide range of temperatures. We establish some basic understanding of identifying layered materials with low thermal conductivities, which can guide and stimulate the search and study of other layered materials for TE applications.

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