Strain engineering and photocatalytic application of single-layer ReS
arXiv:1601.01632 · doi:10.1016/j.ijhydene.2016.11.097
Abstract
We present a theoretical study on the electronic, dynamical, and photocatalytic properties of single-layer ReS under uniaxial and shear strains. The single-layer ReS shows strong anisotropic responses to straining. It remains dynamically stable for a wide range of -axial strain, but becomes unstable for 2\% -axial compressive strain. The single-layer ReS is calculated to be an indirect bandgap semiconductor, and there is an indirectdirect bandgap transition under 15\% -axial tensile straining. The single-layer ReS is predicted incapable of catalyzing the water oxidation reaction. However, 15\% -axial tensile strain can enable the single-layer ReS for overall photocatalytic water splitting. Besides, the single-layer ReS can also catalyze the overall water splitting and be most efficient under acidic water solutions with pH=3.8.