Issue 35, 2018

Strain-engineering tunable electron mobility of monolayer IV–V group compounds

Abstract

First-principles simulations demonstrate the anisotropic and high mobility in the new group monolayer IV–V semiconductors. The strain-engineered bandstructure reveals the conduction bands are sensitive to armchair-direction deformation. By applying strains, the electrical transportation in the armchair direction can be further improved or deteriorated. We use this important feature to achieve the tunable electron mobility in monolayer IV–V semiconductors. The controllable introduction of strain into semiconductors offers an important degree of flexibility in electrical transportation. Meanwhile, our works leads to a new approaches for research on mobility control in two-dimensional semiconductors. These will be useful for novel mechanical-electronic devices related to mobility switching.

Graphical abstract: Strain-engineering tunable electron mobility of monolayer IV–V group compounds

Supplementary files

Article information

Article type
Paper
Submitted
23 May 2018
Accepted
08 Aug 2018
First published
09 Aug 2018

Nanoscale, 2018,10, 16750-16758

Strain-engineering tunable electron mobility of monolayer IV–V group compounds

W. Zhang, J. Yin, Y. Ding, Y. Jiang and P. Zhang, Nanoscale, 2018, 10, 16750 DOI: 10.1039/C8NR04186E

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