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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Role of Surface States in Photocatalysis: Study of Chlorine-Passivated CdSe Nanocrystals for Photocatalytic Hydrogen Generation
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Role of Surface States in Photocatalysis: Study of Chlorine-Passivated CdSe Nanocrystals for Photocatalytic Hydrogen Generation

机译:表面态在光催化中的作用:氯钝化CdSe纳米晶体用于光催化氢生成的研究

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摘要

We examine the effects of chlorine-passivation of Cd surface atoms on photocatalytic H2O reduction by CdSe NCs. Transient absorption spectroscopy reveals that Cl passivation removes electron trap states in CdSe NCs, which is also reflected in an increase of photoluminescence quantum yield, e.g., from 9 to 22% after the Cl treatment. Size-tunable energy states in CdSe NCs enable the systematic investigation of surface defects and their effect on the photocatalytic hydrogen generation rate. It turns out that, depending on band-edge energy levels, the surface trap states may enhance or inhibit photocatalysis. Cl-treated CdSe NCs larger than 2.7 nm show a higher hydrogen evolution rate than untreated CdSe NCs of the same size as Cl treatment removes trap states with energy below the H2O reduction potential. In contrast, the same Cl treatment does not increase the photocatalytic rate of CdSe NCs smaller than 2.7 nm because both the conduction band edge and trap states are above the water reduction potential. The size-dependence of the effect of Cl treatment suggests that electron trap states in CdSe may promote photocatalytic activity by enhancing charge separation.
机译:我们研究了CdSe NCs对Cd表面原子的氯钝化对光催化H2O还原的影响。瞬态吸收光谱表明,Cl钝化消除了CdSe NCs中的电子陷阱状态,这也反映为Cl处理后光致发光量子产率的增加,例如从9%增加到22%。 CdSe NCs中尺寸可调的能量状态可以对表面缺陷及其对光催化氢生成速率的影响进行系统研究。事实证明,取决于带边能量水平,表面陷阱状态可能会增强或抑制光催化作用。大于2.7 nm的经Cl处理的CdSe NCs的放氢速率高于未处理的具有与Cl处理相同尺寸的CdSe NCs的氢释放速率,该处理与Cl处理以低于H2O还原电位的能量去除了陷阱态。相反,相同的Cl处理不会增加CdSe NCs小于2.7 nm的光催化速率,因为导带边缘和陷阱态均高于减水电位。 Cl处理效果的大小依赖性表明,CdSe中的电子陷阱状态可能通过增强电荷分离来促进光催化活性。

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