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首页> 外文期刊>Angewandte Chemie >Boosting Photocatalytic Hydrogen Production of a Metal-Organic Framework Decorated with Platinum Nanoparticles: The Platinum Location Matters
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Boosting Photocatalytic Hydrogen Production of a Metal-Organic Framework Decorated with Platinum Nanoparticles: The Platinum Location Matters

机译:促进用铂纳米颗粒装饰的金属有机骨架的光催化氢生产:铂的位置问题

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Improving the efficiency of electron-hole separation and charge-carrier utilization plays a central role in photocatalysis. Herein, Pt nanoparticles of ca. 3 nm are incorporated inside or supported on a representative metal-organic framework (MOF), UiO-66-NH2, denoted as Pt@UiO-66-NH2 and Pt/UiO-66-NH2, respectively, for photocatalytic hydrogen production via water splitting. Compared with the pristine MOF, both Pt-decorated MOF nanocomposites exhibit significantly improved yet distinctly different hydrogen-production activities, highlighting that the photocatalytic efficiency strongly correlates with the Pt location relative to the MOF. The Pt@UiO-66-NH2 greatly shortens the electron-transport distance, which favors the electron-hole separation and thereby yields much higher efficiency than Pt/UiO-66-NH2. The involved mechanism has been further unveiled by means of ultrafast transient absorption and photoluminescence spectroscopy.
机译:提高电子-空穴分离效率和电荷载流子利用在光催化中起着核心作用。在本文中,Pt纳米颗粒约。 3 nm掺入或支撑在代表性的金属有机骨架(MOF)中,UiO-66-NH2(分别表示为Pt @ UiO-66-NH2和Pt / UiO-66-NH2)用于通过水进行光催化制氢分裂。与原始MOF相比,两种装饰有Pt的MOF纳米复合材料均显示出显着改善但显着不同的产氢活性,从而突出表明光催化效率与Pt相对于MOF的位置密切相关。 Pt @ UiO-66-NH2大大缩短了电子的传输距离,有利于电子-空穴的分离,因此比Pt / UiO-66-NH2的效率高得多。通过超快速瞬态吸收和光致发光光谱进一步揭示了所涉及的机理。

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