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Updated: Sep 17, 2025

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Published on: February 11, 2016
Pivotal Role of Surface Holes in Photocatalytic Oxygen Evolution
1Inner Mongolia Key Laboratory of Rare Earth Catalysis, College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot 010021, People's Republic of China.
Abstract:
Taking the rutile TiO2(110) surface as a prototype, we elucidate the pivotal role of surface holes in the oxygen evolution reaction (OER) through density functional theory simulations. We demonstrate that Yb doping on TiO2(110) eliminates bulk electron polarons (EPs) while it generates delocalized surface holes. These holes, synergizing with interfacial hydrogen-bond networks, drive the decomposition of adsorbed H2O into hydroxyl radicals (·OH) and H atoms, underscoring the critical function of surface holes in initiating proton-coupled electron transfer. However, the Yb-doped surface remains inactive for full OER due to insufficient hole density. In contrast, titanium vacancy (VTi) defects not only suppress bulk EPs but also produce a higher concentration of delocalized holes. This enhanced hole density facilitates a four-step hole-mediated oxidation pathway for adsorbed H2O, enabling efficient O2 evolution via lattice oxygen participation. Our findings provide atomistic insights into hole-regulated OER mechanisms and establish design principles for optimizing photocatalysts for overall water splitting.
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