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Quan Quan

Researcher at Fuzhou University

Publications -  22
Citations -  4559

Quan Quan is an academic researcher from Fuzhou University. The author has contributed to research in topics: Chemistry & Heterojunction. The author has an hindex of 6, co-authored 8 publications receiving 2971 citations.

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Electrocatalysis for the oxygen evolution reaction: recent development and future perspectives

TL;DR: This review acquaints some materials for performing OER activity, in which the metal oxide materials build the basis of OER mechanism while non-oxide materials exhibit greatly promising performance toward overall water-splitting.
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Graphene and its derivatives as versatile templates for materials synthesis and functional applications

TL;DR: Recent progress on graphene and its derivatives as versatile templates for materials synthesis is demonstrated, particularly highlighting the basic fundamental roles of graphene in the materials preparation process.
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Multifarious roles of carbon quantum dots in heterogeneous photocatalysis

TL;DR: In this paper, the authors provide a concise minireview to elaborate the multifarious roles of CQDs in photocatalysis, including photoelectron mediator and acceptor, photosensitizer, photocatalyst, reducing agent for metal salt, enhancing adsorption capacity and spectral converter.
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Progressive Design of Plasmonic Metal-Semiconductor Ensemble toward Regulated Charge Flow and Improved Vis-NIR-Driven Solar-to-Chemical Conversion.

TL;DR: The significance of rationally progressive design of plasmonic metal-semiconductor-based composite system for boosting the regulated directional flow of hot charge carrier and thus the more efficient use of broad-spectrum solar energy conversion is highlighted.
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Decorating geometry- and size-controlled sub-20 nm Pd nanocubes onto 2D TiO2 nanosheets for simultaneous H2 evolution and 1,1-diethoxyethane production

TL;DR: In this paper, geometry and size-controlled sub-20 nm Pd nanocubes (NCs) have been fabricated and hybridized with 2D TiO2 nanosheets (TNS) to explore how the geometry of Pd influences the photocatalytic efficiency of PD-based semiconductor composites.