2D Metallic Transition‐Metal Dichalcogenides: Structures, Synthesis, Properties, and Applications
2D металлические дихалькогениды переходных металлов: структуры, синтез, свойства и применения
2021-08-21
SCID: 54.1/vm6yjuxr
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2D metallic transition-metal dichalcogenidescharge-density-wave orderelectrocatalysisintrinsic magnetismsuperconductivity
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Abstract (AI)
Abstract 2D materials and the associated heterostructures define an ideal material platform for investigating physical and chemical properties, and exhibiting new functional applications in (opto)electronic devices, electrocatalysis, and energy storage. 2D transition metal dichalcogenides (2D TMDs), as a member of the 2D materials family including 2D semiconducting TMDs (s‐TMDs) and 2D metallic/semimetallic TMDs (m‐TMDs) have attracted considerable attention in the scientific community. Over the past decade, the 2D s‐TMDs have been extensively researched and reviewed elsewhere. Because of their distinctive physical properties including intrinsic magnetism, charge‐density‐wave order and superconductivity, and potential applications, such as high‐performance electronic devices, catalysis, and as metal electrode contacts, 2D m‐TMDs have grabbed widespread attention in recent years. However, reviews demonstrating the m‐TMDs systematically and comprehensively have been rarely reported. Here, the recent advances in 2D m‐TMDs in the aspects of their unique structures, synthetic approaches, distinctive physical properties, and functional applications are highlighted. Finally, the current challenges and perspectives are discussed.
Key Findings
1
2D metallic TMDs show potential for high-performance electronic devices, electrocatalysis, energy storage, and metal electrode contacts.
2
2D metallic and semimetallic transition-metal dichalcogenides exhibit intrinsic magnetism, charge-density-wave order, and superconductivity.
3
The field’s current challenges and future perspectives are identified to guide further development of 2D metallic TMDs.
4
The review systematically examines the unique structures, synthesis approaches, physical properties, and functional applications of 2D metallic TMDs.
Research Object
2D metallic and semimetallic transition-metal dichalcogenides (m-TMDs)
Research Subject
Their structures, synthesis methods, distinctive physical properties including intrinsic magnetism, charge-density-wave order, and superconductivity, functional applications, challenges, and prospects
Publication Details
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2021-08-21
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