From two-dimensional materials to their heterostructures: An electrochemist's perspective

От двумерных материалов к их гетероструктурам: взгляд электрохимика
Matěj Velický, Péter S. Tóth
2017-05-25

2D heterostructureselectrochemistry of 2D materialsoptoelectronics and photocatalysis applicationstransition metal dichalcogenides (TMDCs)two-dimensional (2D) materials
Two-dimensional (2D) materials have, within just one decade, reshaped many disciplines of modern science and technology, both through intensive fundamental research and early commercial applications. In this review, we will provide a comprehensive summary of the properties, synthesis, characterisation, and application of 2D materials in the context of electrochemistry and related scientific fields. Firstly, the structural, electronic, optical, and mechanical properties, and a variety of preparation and characterisation techniques of 2D materials are presented. Secondly, current electrochemical understanding of 2D and layered materials and their modification is discussed. Lastly, future perspectives and new frontiers in optoelectronics, photocatalysis, and renewable energy using 2D materials are outlined. Our primary focus is on group 6 transition metal dichalcogenides (TMDCs) and other emerging 2D materials beyond graphene, including their heterostructures. These nanomaterials are essential for the next generation of devices in tuneable electrochemistry, sensing, and photovoltaics. Although broad in scope, this review is not an exhaustive list of facts; rather, it summarises the established knowledge and pinpoints the most promising future trends. It is aimed at readers with background in electrochemistry wanting to broaden their perspective or initiate research on 2D materials as well as those with 2D materials expertise looking to work on electrochemistry-based applications, such as energy storage and conversion.
1
Current electrochemical understanding and modification strategies for 2D and layered materials are discussed and consolidated.
2
Future perspectives identify optoelectronics, photocatalysis, and renewable energy applications as promising frontiers for 2D materials in electrochemistry.
3
Group 6 transition metal dichalcogenides (TMDCs) and other emerging 2D materials beyond graphene are highlighted as key materials for tunable electrochemistry, sensing, and photovoltaics.
4
It presents a variety of synthesis and characterisation techniques for 2D materials and their heterostructures.
5
The review summarizes structural, electronic, optical, and mechanical properties of 2D materials relevant to electrochemistry.

Two-dimensional (2D) materials and their heterostructures (including group-6 TMDCs and emerging 2D materials beyond graphene)

Electrochemical properties, synthesis, characterization, modification, and application-relevant behaviors of 2D materials and their heterostructures for tunable electrochemistry, sensing, photocatalysis, photovoltaics, and energy storage/conversion

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2017-05-25
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Matěj Velický
Péter S. Tóth
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