Scinovex
reviewTop 1% cited

Strain engineering of graphene: a review

Nanoscale · 2016 · Vol. 8(6) · pp. 3207–3217
Si ChenZhimei SunFeng Liu

Abstract

Graphene has intrigued the science community by many unique properties not found in conventional materials. In particular, it is the strongest two-dimensional material ever measured, being able to sustain reversible tensile elastic strain larger than 20%, which yields an interesting possibility to tune the properties of graphene by strain and thus opens a new field called "straintronics". In this article, the current progress in the strain engineering of graphene is reviewed. We first summarize the strain effects on the electronic structure and Raman spectra of graphene. We then highlight the electron-phonon coupling greatly enhanced by the biaxial strain and the strong pseudomagnetic field induced by the non-uniform strain with specific distribution. Finally, the potential application of strain-engineering in the self-assembly of foreign atoms on the graphene surface is also discussed. Given the short history of graphene straintronics research, the current progress has been notable, and many further advances in this field are expected.

Graphene research and applications2D Materials and ApplicationsGraphene and Nanomaterials ApplicationsGrapheneStrain engineeringStrain (injury)Raman spectroscopyMaterials scienceNanotechnologyTensile strainCoupling (piping)PhononField (mathematics)

Funding

  • National Natural Science Foundation of China
Citations
606
FWCI
28.90
field-weighted impact
References
126
Percentile
100%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.