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Recent Advances in the Carrier Mobility of Two-Dimensional Materials: A Theoretical Perspective

ACS Omega · 2020 · Vol. 5(24) · pp. 14203–14211
Showkat H. MirVivek YadavJayant K. Singh

Abstract

Since the breakthrough of graphene, 2D materials have engrossed tremendous research attention due to their extraordinary properties and potential applications in electronic and optoelectronic devices. The high carrier mobility in the semiconducting material is critical to guarantee a high switching speed and low power dissipation in the corresponding device. Here, we review significant recent advances and important new developments in the carrier mobility of 2D materials based on theoretical investigations. We focus on some of the most widely studied 2D materials, their development, and future applications. Based on the current progress in this field, we conclude the review by providing challenges and an outlook in this field.

2D Materials and ApplicationsGraphene research and applicationsMXene and MAX Phase MaterialsElectron mobilityNanotechnologyPerspective (graphical)GrapheneEngineering physicsMaterials scienceField (mathematics)Computer scienceOptoelectronicsPhysics

Funding

  • Indian Institute of Technology Kanpur
  • Ministry of Education, India
Citations
277
FWCI
10.46
field-weighted impact
References
31
Percentile
99%
vs. same field & year
Citations per year
References
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Solid State Communications · 2008 · 7,908 citations
The rise of graphene
Nature Materials · 2007 · 39,026 citations
Single-layer MoS2 transistors
Nature Nanotechnology · 2011 · 14,596 citations
MXene: a promising photocatalyst for water splitting
Journal of Materials Chemistry A · 2016 · 718 citations
The Rise of MXenes
ACS Nano · 2019 · 2,341 citations
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