Phase Engineering of Two‐Dimensional Transition Metal Dichalcogenides

Author:

Kim Jong Hun12ORCID,Sung Hayeong1ORCID,Lee Gwan-Hyoung1ORCID

Affiliation:

1. Department of Materials Science and Engineering Seoul National University Seoul 08826 Korea

2. Department of Physics Inha University Incheon 22212 Republic of Korea

Abstract

Since the successful isolation of single‐layer graphene with an atomic thickness, various van der Waals (vdW) materials have been intensively studied owing to their unique properties. Among the families of vdW materials, transition metal dichalcogenides (TMDs) have served as representatives because of their diverse band structures and intriguing quantum states, unlike those observed in their bulk counterparts. Particularly, unconventional polymorphic phases of TMDs increase the degrees of freedom in device fabrication and property modulation. As variations in structural phases significantly change the electrical, physical, and chemical properties of materials, phase engineering is essential for the new paradigm of TMD‐based devices. In this review, diverse strategies that can induce and control structural phases in TMDs are explored. After introducing the polymorphic phase changes and the resulting electronic band structures, the various empirical approaches used for manipulating phases in vdW materials, including phase‐selective synthesis and post‐synthesis treatments, are summarized. The group‐VI TMDs are considered as reference, and the analysis is extended to other TMDs across various groups in the periodic table. In addition to providing a comprehensive survey of the recent progress in TMD applications, the challenges for TMD applications and potential opportunities in emerging fields are discussed.

Funder

National Research Foundation of Korea

Inha University

Publisher

Wiley

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference650 articles.

1. A Modern Approach to Critical Phenomena

2. P.Ehrenfest Phasenumwandlungen im ueblichen und erweiterten Sinn classifiziert nach den entsprechenden Singularitaeten des thermodynamischen Potentiales. NV Noord-Hollandsche Uitgevers Maatschappij 1933.

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