Prediction of semiconductor band edge positions in aqueous environments from first principles

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Abstract

The ability to predict a semiconductor's band edge positions in solution is important for the design of water-splitting photocatalyst materials. In this paper, we introduce a first-principles method to compute the conduction-band minima of semiconductors relative to the water H2O/H2 level using density functional theory with semilocal functionals and classical molecular dynamics. We test the method on six well known photocatalyst materials: TiO2, WO3, CdS, ZnSe, GaAs, and GaP. The predicted band edge positions are within 0.34 eV of the experimental data, with a mean absolute error of 0.19 eV. © 2011 American Physical Society.

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Wu, Y., Chan, M. K. Y., & Ceder, G. (2011). Prediction of semiconductor band edge positions in aqueous environments from first principles. Physical Review B - Condensed Matter and Materials Physics, 83(23). https://doi.org/10.1103/PhysRevB.83.235301

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