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首页> 外文期刊>Nanotechnology >Noble-metal-free CoxP nanoparticles: modified perovskite oxide ultrathin nanosheet photocatalysts with significantly enhanced photocatalytic hydrogen evolution activity
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Noble-metal-free CoxP nanoparticles: modified perovskite oxide ultrathin nanosheet photocatalysts with significantly enhanced photocatalytic hydrogen evolution activity

机译:无贵金属的Coxp纳米颗粒:改性钙钛矿氧化物超薄纳米片光催化剂,具有显着增强的光催化氢进化活性

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摘要

The integration of semiconductor-based photocatalysts with noble-metal-free cocatalysts has great significance for practical applications. In this work, for the first time, novel CoxP/K+Ca2Nb3O10- nanostructures (abbreviated as CoxP/KCNOus) were synthesized by integrating noble-metal-free CoxP nanoparticles onto the surface of K+Ca2Nb3O10- ultrathin nanosheets (abbreviated as KCNOus), and exhibited enhanced photocatalytic hydrogen generation. Under the irradiation of xenon light, the hydrogen generation rate of the resulting optimal CoxP/KCNOus reached up to 90.4 mu mol g(-1) h(-1), approximately 5.78 times higher than that of single-component KCNOus. The apparent quantum efficiency (AQE) of CoxP/KCNOus is 1.32% at 350 nm. Based on photoluminescence (PL), UV-vis diffuse reflectance spectroscopy (UV-vis DRS), and photo-electrochemical analyses, possible reasons for this improved photocatalytic activity can be ascribed to the enhanced light absorption capacity and strong separation efficiency of photoinduced carriers over CoxP/KCNOus owing to the formation of the interfaces between KCNOus and CoxP nanoparticles. It is believed that this work will provide a new insight into the development ofefficient and low-cost noble-metal-free cocatalysts for photocatalytic hydrogen evolution reactions.
机译:与无贵金属助催化剂的半导体光催化剂的整合对实际应用具有重要意义。在这项工作中,首次通过将无贵金属的Coxp纳米颗粒与K + Ca2Nb3O10-超薄纳米液面(缩写为Kcnous)的表面(缩写为Kcnous)来合成新的Coxp / k + Ca2Nb3O10-纳米结构(缩写为COXP / KCNOUS)并且表现出增强的光催化氢生成。在氙光的照射下,所得最佳Coxp / Kcnous的氢产生率达到高达90.4μmolg(-1)H(-1),比单组分Kcnous高约5.78倍。 CoxP / Kcnous的表观量子效率(AQE)为1.32%,在350nm处。基于光致发光(PL),UV-VI扩散反射光谱(UV-VIS DRS)和光电化学分析,可以将这种改进的光催化活性的可能原因归因于增强的光吸收能力和光脉冲载体的强分离效率由于KCNOUS和COXP纳米粒子之间的界面形成了COXP / KCNOUS。据信,这项工作将为光催化氢进化反应提供新的洞察力和不含低成本贵金属助催化剂的新洞察力。

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