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Recent Progress in the Synthesis of MoS2 Thin Films for Sensing, Photovoltaic and Plasmonic Applications: A Review

期刊

MATERIALS
卷 14, 期 12, 页码 -

出版社

MDPI
DOI: 10.3390/ma14123283

关键词

layered materials; 2D-MoS2; pulsed laser deposition; chemical vapor deposition; photovoltaic; gas sensors; plasmonics

资金

  1. Region HDF (France)
  2. INRS (QC, Canada)
  3. Natural Sciences and Engineering Research Council (NSERC) of Canada

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Molybdenum disulfide (2D-MoS2) has gained increasing attention for its unique nanoscale properties following the success of graphene. Its switchable bandgap from direct to indirect in ultrathin films offers new prospects for optoelectronic applications. This review presents recent advances in synthesis and characterization of 2D-MoS2 films, as well as their applications in energy harvesting, gas sensing, and plasmonic devices.
In the surge of recent successes of 2D materials following the rise of graphene, molybdenum disulfide (2D-MoS2) has been attracting growing attention from both fundamental and applications viewpoints, owing to the combination of its unique nanoscale properties. For instance, the bandgap of 2D-MoS2, which changes from direct (in the bulk form) to indirect for ultrathin films (few layers), offers new prospects for various applications in optoelectronics. In this review, we present the latest scientific advances in the field of synthesis and characterization of 2D-MoS2 films while highlighting some of their applications in energy harvesting, gas sensing, and plasmonic devices. A survey of the physical and chemical processing routes of 2D-MoS2 is presented first, followed by a detailed description and listing of the most relevant characterization techniques used to study the MoS2 nanomaterial as well as theoretical simulations of its interesting optical properties. Finally, the challenges related to the synthesis of high quality and fairly controllable MoS2 thin films are discussed along with their integration into novel functional devices.

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