4.8 Review

Emerging Phases of Layered Metal Chalcogenides

期刊

SMALL
卷 18, 期 13, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.202105215

关键词

chemical vapor deposition; magnetic element-based chalcogenides; metal phosphorus chalcogenides; transitional metals dichalcogenides

资金

  1. Beijing Institute of Technology [2021CX11013, 3180011182156]
  2. Ministry of Education, Singapore, under its MOE AcRF Tier 3 Award [MOE2018-T3-1-002]
  3. Ministry of Education, Singapore, under MOE Tier 2 [MOE2015-T2-2-007, MOE2016-T2-2-153, MOE2017-T2-2-136]
  4. Ministry of Education, Singapore, under MOE Tier 3 [MOE2018-T3-1-002]
  5. A*Star QTE programme
  6. Sichuan Province Key Laboratory of Display Science and Technology
  7. Ministry of Education, Singapore, under its MOE AcRF Tier 1 Award [RG7/18]

向作者/读者索取更多资源

This article introduces the unusual phases and characteristics of layered metal chalcogenides, as well as their potential applications. It discusses the methods and strategies for producing the unusual phases and provides an outlook on the synthetic methodology and potential applications.
Layered metal chalcogenides, as a rich family of 2D materials, have attracted increasing research interest due to the abundant choices of materials with diverse structures and rich electronic characteristics. Although the common metal chalcogenide phases such as 2H and 1T have been intensively studied, many other unusual phases are rarely explored, and some of these show fascinating behaviors including superconductivity, ferroelectrics, ferromagnetism, etc. From this perspective, the unusual phases of metal chalcogenides and their characteristics, as well as potential applications are introduced. First, the unusual phases of metal chalcogenides from different classes, including transition metal dichalcogenides, magnetic element-based chalcogenides, and metal phosphorus chalcogenides, are discussed, respectively. Meanwhile, their excellent properties of different unusual phases are introduced. Then, the methods for producing the unusual phases are discussed, specifically, the stabilization strategies during the chemical vapor deposition process for the unusual phase growth are discussed, followed by an outlook and discussions on how to prepare the unusual phase metal dichalcogenides in terms of synthetic methodology and potential applications.

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