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Rengui Li

Researcher at Dalian Institute of Chemical Physics

Publications -  90
Citations -  6615

Rengui Li is an academic researcher from Dalian Institute of Chemical Physics. The author has contributed to research in topics: Photocatalysis & Chemistry. The author has an hindex of 31, co-authored 61 publications receiving 4405 citations. Previous affiliations of Rengui Li include Chinese Academy of Sciences & California Institute of Technology.

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Positioning the Water Oxidation Reaction Sites in Plasmonic Photocatalysts

TL;DR: Density functional theory corroborates these findings by revealing the promotion role of interfacial structure (Ti-O-Au) for oxygen evolution in plasmonic water oxidation.
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Intrinsic Facet‐Dependent Reactivity of Well‐Defined BiOBr Nanosheets on Photocatalytic Water Splitting

TL;DR: Well-defined BiOBr nanosheets dominating with respective facets, (001) and (010), are exemplified to track the reactivity of crystal facets for photocatalytic water splitting and verified the distinct reactivity is not only owing to the highly exposed facets, but dominantly determined by the co-exposing facets.
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Photocatalytic oxidation of thiophene on BiVO4 with dual co-catalysts Pt and RuO2 under visible light irradiation using molecular oxygen as oxidant

TL;DR: In this article, the authors showed that thiophene can be oxidized to SO3 on BiVO4 co-loaded with Pt and RuO2 co-catalysts under visible light irradiation with molecular oxygen as oxidant.
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Latest progress in hydrogen production from solar water splitting via photocatalysis, photoelectrochemical, and photovoltaic-photoelectrochemical solutions

TL;DR: In this paper, a review summa-rizes the very recent progress (mainly in the last 2-3 years) on three major types of solar hydrogen production systems: particulate photocatalysis (PC), photoelectrochemical (PEC), and photovoltaic-photo-electronchemical hybrid systems.
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Significance of Crystal Morphology Controlling in Semiconductor-Based Photocatalysis: A Case Study on BiVO4 Photocatalyst

TL;DR: In this paper, the formation process for the regular decahedron BiVO4 crystals prepared by a convenient hydrothermal method was investigated, and the phase was transformed from tetragonal zircon type to monoclinic sheelite type.