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Hydrothermal synthesis of stable metallic 1T phase WS2nanosheets for thermoelectric application
Piao, Mingxing1; Chu, Jin1; Wang, Xiao1; Chi, Yao1; Zhang, Heng1; Li, Chaolong1; Shi, Haofei1; Joo, Min-Kyu2
2018
摘要Two-dimensional materials have gained great attention as a promising thermoelectric (TE) material due to their unique density of state with confined electrons and holes. Here, we synthesized 1T phase tungsten disulfide (WS2) nanosheets with high TE performance via the hydrothermal method. Flexible WS2nanosheets restacked thin films were fabricated by employing the vacuum filtration technique. The measured electrical conductivity was 45 S cm-1with a Seebeck coefficient of +30 μV K-1at room temperature, indicating a p-type characteristic. Furthermore, the TE performance could be further improved by thermal annealing treatment. It was found the electrical conductivity could be enhanced 2.7 times without sacrificing the Seebeck coefficient, resulting in the power factor of 9.40 μW m-1K-2. Moreover, such 1T phase WS2nanosheets possess high phase stability since the TE properties maintained constant at least half one year in the air atmosphere. Notably, other kinds of 1T phase transitional metal dichalcogenides (TMDCs) with excellent TE performance also could be imitated by using the procedure in this work. Finally, we believe a variety of materials based on 1T phase TMDCs nanosheets have great potential as candidate for future TE applications. © 2017 IOP Publishing Ltd.
DOI10.1088/1361-6528/aa9bfe
发表期刊Nanotechnology
ISSN09574484
卷号29期号:2
收录类别EI
语种英语
EISSN13616528