Recent development of two-dimensional transition metal dichalcogenides and their applications
Недавние разработки двумерных дихалькогенидов переходных металлов и их применения
2017-01-09
SCID: 54.1/cqkyfp2h
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MoS2MoSe2WS2WSe2two-dimensional transition metal dichalcogenides
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Abstract (AI)
Recent advances in atomically thin two-dimensional transition metal dichalcogenides (2D TMDs) have led to a variety of promising technologies for nanoelectronics, photonics, sensing, energy storage, and opto-electronics, to name a few. This article reviews the recent progress in 2D materials beyond graphene and includes mainly transition metal dichalcogenides (TMDs) (e.g. MoS 2 , WS 2 , MoSe 2 , and WSe 2 ). These materials are finding niche applications for next-generation electronics and optoelectronics devices relying on ultimate atomic thicknesses. Albeit several challenges in developing scalable and defect-free TMDs on desired substrates, new growth techniques compatible with traditional and unconventional substrates have been developed to meet the ever-increasing demand of high quality and controllability for practical applications. The fabrication of novel 2D TMDs that exhibit exotic functionalities and fundamentally new chemistry is highlighted. And finally, in parallel with the electronics, the considerable effort devoted to using these materials for energy and sensing applications is discussed in detail.
Key Findings
1
2D TMDs are suitable for next-generation electronics and optoelectronics due to their ultimate atomic thickness enabling niche applications.
2
Atomically thin 2D transition metal dichalcogenides (TMDs) such as MoS2, WS2, MoSe2, and WSe2 enable promising technologies in nanoelectronics, photonics, sensing, energy storage, and optoelectronics.
3
Novel 2D TMDs with exotic functionalities and fundamentally new chemistries have been fabricated and highlighted as important developments.
4
Scalable, defect-free growth on desired substrates remains challenging, but new growth techniques compatible with traditional and unconventional substrates have been developed to improve quality and controllability.
5
Substantial research effort has been devoted to applying 2D TMDs in energy and sensing applications, discussed in detail in the review.
Research Object
Two-dimensional transition metal dichalcogenides (2D TMDs, e.g. MoS2, WS2, MoSe2, WSe2)
Research Subject
Recent development, synthesis/growth techniques, scalable defect control, novel fabrication yielding exotic functionalities, and their applications in nanoelectronics, photonics, sensing, energy storage and optoelectronics
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2017-01-09
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