arXiv · 1606.06748
Valence force model and nanomechanics of single-layer phosphorene
Abstract
In order to understand the relation of strain and material properties, both a microscopic model connecting a given strain to the displacement of atoms, and a macroscopic model relating applied stress to induced strain, are required. Starting from a valence-force model for black phosphorous (phosphorene) [Kaneta et al., Solid State Communications, 1982, 44, 613] we use recent experimental and computational results to obtain an improved set of valence-force parameters. From the model we calculate the phonon dispersion and the elastic properties of single-layer phosphorene. Finally, we use these results to derive a complete continuum model, including the bending rigidities, valid for long-wavelength deformations of phosphorene. This continuum model is then used to study the properties of pressurized suspended phosphorene sheets.
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Daniel Midtvedt, Alexander Croy. 2016-06-21. Valence force model and nanomechanics of single-layer phosphorene. https://doi.org/10.1039/c6cp04361e
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