Superior mechanical flexibility of phosphorene and few-layer black phosphorus
Xidian University · Arizona State University
Abstract
Recently, fabricated two dimensional (2D) phosphorene crystal structures have demonstrated great potential in applications of electronics. Mechanical strain was demonstrated to be able to significantly modify the electronic properties of phosphorene and few-layer black phosphorus. In this work, we employed first principles density functional theory calculations to explore the mechanical properties of phosphorene, including ideal tensile strength and critical strain. It was found that a monolayer phosphorene can sustain tensile strain up to 27% and 30% in the zigzag and armchair directions, respectively. This enormous strain limit of phosphorene results from its unique puckered crystal structure. We found that…
Citation impact
- FWCI
- 49.45
- Percentile
- 100%
- References
- 53
Authors
2Topics & keywords
- Phosphorene
- Zigzag
- Materials science
- Monolayer
- Ultimate tensile strength
- Graphene
- Density functional theory
- Modulus
- Affordable and clean energy