Understanding photocatalytic water oxidation in SrTiO<sub>3</sub> [001] surfaces
ORAL
Abstract
Perovskite oxides such as SrTiO3 have garnered considerable interest due to their high photocatalytic efficiency under UV irradiation as well as favorable interfacial interactions with water, two important features that drive solar water splitting. In this work, we present a unified computational and experimental account of the photocatalytic activity at the SrO- and TiO2- terminations of aqueous-solvated [001] SrTiO3. Our experimental investigations show that the overall water splitting proceeds only when both SrO- and TiO2- terminations are exposed to water. Using density functional theory-based simulations, we verify this observation and elucidate the underlying mechanism driving this process using a sequence of four hole transfers. We conclude that while the water-oxidation reaction is favorably catalyzed only at the SrO-surface, the TiO2-surface provides the necessary band alignment for the redox reaction to proceed, thus proving that both terminations are crucial for photocatalytic water splitting.
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Presenters
Vidushi Sharma
Theoretical Division (T-1), and Center for Nonlinear Studies, Los Alamos National Laboratory
Authors
Vidushi Sharma
Theoretical Division (T-1), and Center for Nonlinear Studies, Los Alamos National Laboratory
Amanda Lai
Department of Physics and Astronomy, Stony Brook University
Benjamin Bein
Department of Physics and Astronomy, Stony Brook University
Betul Pamuk
Cornell University, School of Applied and Engineering Physics, Cornell University
Cyrus E Dreyer
Department of Physics and Astronomy, Stony Brook University, and CCQ Flatiron Institute, Stony Brook University (SUNY), State Univ of NY - Stony Brook
Matthew Dawber
Department of Physics and Astronomy, Stony Brook University
Marivi Fernandez-Serra
Department of Physics and Astronomy, and Institute for Advanced Computational Science, Stony Brook University, Stony Brook University