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Crystal Facet Engineering on SrTiO<sub>3</sub> Enhances Photocatalytic Overall Water Splitting

Yang Zhang, Xuefeng Wu, Zhi-Hao Wang, Yu Peng, Yuanwei Liu, Shuang Yang, Chenghua Sun, Xiaoxiang Xu, Xie Zhang, Jun Kang, Su‐Huai Wei, Peng Fei Liu, Sheng Dai, Hua Gui Yang

2024Journal of the American Chemical Society181 citationsDOI

Abstract

Single-crystal semiconductor-based photocatalysts exposing unique crystallographic facets show promising applications in energy and environmental technologies; however, crystal facet engineering through solid-state synthesis for photocatalytic overall water splitting is still challenging. Herein, we develop a novel crystal facet engineering strategy through solid-state recrystallization to synthesize uniform SrTiO 3 single crystals exposing tailored {111} facets. The presynthesized low-crystalline SrTiO 3 precursors enable the formation of well-defined single crystals through kinetically improved crystal structure transformation during solid-state recrystallization process. By employing subtle Al 3+ ions as surface morphology modulators, the crystal surface orientation can be precisely tuned to a controlled percentage of {111} facets. The photocatalytic overall water splitting activity increases with the exposure percentage of {111} facets. Owing to the outstanding crystallinity and favorable anisotropic surface structure, the SrTiO 3 single crystals with 36.6% of {111} facets lead to a 3-fold enhancement of photocatalytic hydrogen evolution rates up to 1.55 mmol·h –1 in a stoichiometric ratio of 2:1 than thermodynamically stable SrTiO 3 enclosed with isotropic {100} facets.

Topics & Concepts

ChemistryFacet (psychology)PhotocatalysisWater splittingCrystal (programming language)Crystal engineeringCrystal structureCrystallographyChemical engineeringOrganic chemistryCatalysisSupramolecular chemistryPsychologyPersonalitySocial psychologyComputer scienceEngineeringProgramming languageBig Five personality traitsAdvanced Photocatalysis TechniquesTiO2 Photocatalysis and Solar CellsAdvanced Nanomaterials in Catalysis
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