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Steering Photoelectrons Excited in Carbon Dots into Platinum Cluster Catalyst for Solar‐Driven Hydrogen Production

机译:将碳点中激发的光电子控制到铂簇催化剂中以驱动太阳能制氢

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摘要

In composite photosynthetic systems, one most primary promise is to pursue the effect coupling among light harvesting, charge transfer, and catalytic kinetics. Herein, this study designs the reduced carbon dots (r‐CDs) as both photon harvesters and photoelectron donors in combination with the platinum (Pt) clusters and fabricated the function‐integrated r‐CD/Pt photocatalyst through a photochemical route to control the anchoring of Pt clusters on r‐CDs' surface for solar‐driven hydrogen (H2) generation. In the obtained r‐CD/Pt composite, the r‐CDs absorb solar photons and transform them into energetic electrons, which transfer to the Pt clusters with favorable charge separation for H2 evolution reaction (HER). As a result, the efficient coupling of respective natures from r‐CDs in photon harvesting and Pt in proton reduction is achieved through well‐steered photoelectron transfer in the r‐CD/Pt system to cultivate a remarkable and stable photocatalytic H2 evolution activity with an average rate of 681 µmol g−1 h−1. This work integrates two functional components into an effective HER photocatalyst and gains deep insights into the regulation of the function coupling in composite photosynthetic systems.
机译:在复合光合作用系统中,最主要的希望是追求光收集,电荷转移和催化动力学之间的效应耦合。本文中,本研究设计了还原碳点(r-CD)作为光子收集器和光电子供体,同时结合了铂(Pt)团簇,并通过光化学途径制造了功能集成的r-CD / Pt光催化剂,以控制锚固r-CDs表面上的Pt团簇的产生,用于产生太阳驱动的氢(H2)。在获得的r-CD / Pt复合材料中,r-CD吸收太阳光子并将其转换为高能电子,然后转移到Pt团簇中,并以有利的电荷分离进行H2放出反应(HER)。结果,通过在r-CD / Pt系统中进行良好的光电子转移,培养出显着而稳定的光催化H2析出活性,从而实现了光子收集中r-CDs和质子还原中Pt各自性质的有效耦合。平均速率为681 µmol g -1 h -1 。这项工作将两个功能组件集成到有效的HER光催化剂中,并深入了解了复合光合作用系统中功能耦合的调控。

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