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Structure-controlled CdS(0D, 1D, 2D) embedded onto 2D ZnS porous nanosheets for highly efficient photocatalytic hydrogen generation

机译:嵌入2D ZnS多孔纳米片中的结构受控的CdS(0D,1D,2D)用于高效光催化制氢

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The morphological characteristics of a photocatalyst is central to its photocatalytic activity for solar energy conversion. Herein, Pt–ZnS/CdS composites comprising ZnS nanosheets, embedded via the geometry and size modulation and tuning of band gap of CdS with 0D, 1D or 2D structure, were investigated for solar hydrogen production. The photoactivity results indicate that the shape and morphology of CdS in the Pt–ZnS/CdS heterojunction play a pivotal role in affecting the photocatalytic performance. CdS with a 1D structure deposited on porous Pt–ZnS nanosheets endow the heterojunction with increased efficiency for the separation and transport of photoinduced electron–hole pairs. The proposed mechanism for the boosted suppression of charge recombination was further confirmed by the transient photocurrent response and photoluminescence.
机译:光催化剂的形态特征对于其用于太阳能转化的光催化活性至关重要。在此,研究了通过Znem纳米片嵌入并通过几何和尺寸调制以及具有0D,1D或2D结构的CdS的带隙调谐对Pt-ZnS / CdS复合材料进行的太阳能制氢。光活性结果表明,Pt-ZnS / CdS异质结中CdS的形状和形态在影响光催化性能方面起着关键作用。在多孔Pt-ZnS纳米片上沉积的具有一维结构的CdS使异质结具有更高的分离效率和光致电子-空穴对的传输效率。瞬态光电流响应和光致发光进一步证实了所提出的增强的电荷重组抑制机制。

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