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Quantum Dot Assembly for Light‐Driven Multielectron Redox Reactions,such as Hydrogen Evolution and CO2 Reduction
Authors:Xu‐Bing Li  Chen‐Ho Tung  Li‐Zhu Wu
Abstract:Light‐driven multielectron redox reactions (e.g., hydrogen (H2) evolution, CO2 reduction) have recently appeared at the front of solar‐to‐fuel conversion. In this Minireview, we focus on the recent advances in establishing semiconductor quantum dot (QD) assemblies to enhance the efficiencies of these light‐driven multielectron reduction reactions. Four models of QD assembly are established to promote the sluggish kinetics of multielectron transfer from QDs to cocatalysts, thus leading to an enhanced activity of solar H2 evolution or CO2 reduction. We also forecast the potential applications of QD assemblies in other multielectron redox reactions, such as nitrogen (N2) fixation and oxygen (O2) evolution from H2O.
Keywords:CO2 reduction  hydrogen evolution  multielectron redox reactions  photocatalysis  quantum dots
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