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Synthesis of Large-Scale Transition Metal Dichalcogenides for Their Commercialization

Cited 1 time in Web of Science Cited 5 time in Scopus
Authors

Park, Seoung-Woong; Jo, Yong Jun; Bae, Sukang; Hong, Byung Hee; Lee, Seoung-Ki

Issue Date
2020-11
Citation
한국진공학회지, Vol.29 No.6, pp.133-142
Keywords
Transition metal dichalcogenide;Large-scale synthesis;Solution-based process;Transistor;Sensor;Hydrogen evolution reaction
Abstract
Transition metal dichalcogenides (TMDC) have been identified as excellent platforms for developing the next-generation commercial flexible logic devices and sensors, owing to their outstanding mechanical, optical, and electrical properties. The TMDCs can be used to produce novel form-factors for wearable electronic devices. Typically, synthesis of large-scale TMDC thin film have been achieved by complexity vacuum-based approach. Therefore, it is essential to develop a simple and effective method to boost-up mass production of TMDC thin films on a large scale upon arbitrary substrates. In this regard, the solution-based TMDC synthesis method is advantageous because it proposes a simplification of the fabrication processes and an easy scaling-up of the material with a non-vacuum system. In this review, we summarize the evolution of the solution-based thin-film preparation and synthesis of the TMDCs; subsequently, we discuss the merits and drawbacks of the recently developed methods to form TMDC thin films directly from the deposited precursor. Finally, we discuss the practical applications of the TMDC thin films, which demonstrate the feasibility of their commercialized applications in electronic devices and sensors.
ISSN
2288-6559
URI
https://hdl.handle.net/10371/178075
DOI
https://doi.org/10.5757/ASCT.2020.29.6.133
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  • College of Natural Sciences
  • Department of Chemistry
Research Area Physics

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