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首页> 外文期刊>Frontiers in Chemistry >Efficient and Stable Photocatalytic Hydrogen Evolution Activity of Multi-Heterojunction Composite Photocatalysts: CdS and NiS2 Co-modified NaNbO3 Nanocubes
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Efficient and Stable Photocatalytic Hydrogen Evolution Activity of Multi-Heterojunction Composite Photocatalysts: CdS and NiS2 Co-modified NaNbO3 Nanocubes

机译:多杂交复合复合光催化剂的高效稳定的光催化氢进化活性:Cds和NIS2共改性纳米纳米孔

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In this study, a NaNbO3/CdS/NiS2 ternary composite photocatalyst containing no precious metals was successfully prepared by simple hydrothermal method. The prepared ternary photocatalyst has a significant improvement in photocatalytic performance of hydrogen production from water splitting under visible light irradiation. The best sample NCN40% hydrogen production rate is 4.698 mmol g-1 h-1, which is about 24.7 times as that of pure CdS sample. In addition, the stability of the composite catalyst in the long-term photocatalytic hydrogen production cycle is also improved. The reason for the enhanced hydrogen production performance may be the optimization of the microstructure of the catalyst and the reduction of photogenerated electron-hole recombination. The construction of multi-heterojunctions (NaNbO3-CdS, CdS-NiS2, NaNbO3-NiS2) help to reduce the recombination of carriers. Furthermore, the in-situ formed NiS2 nanoparticles can be served as active sites for hydrogen evolution. All of these factors induced to the improved photocatalytic activity of the as-prepared ternary photocatalyst.
机译:在该研究中,通过简单的水热法成功地制备了不含贵金属的纳米3 / Cds / NIS2三元复合光催化剂。制备的三元光催化剂在可见光照射下的水分裂中具有显着改善的氢催化性能。最佳样品NCN40%氢气产量为4.698mmol G-1 H-1,其纯CDS样品的约24.7倍。此外,还改善了复合催化剂在长期光催化氢气生产周期中的稳定性。增强氢生产性能的原因可以是催化剂微观结构的优化和光遗传的电子 - 空穴重组的还原。施工多杂官能(NaNBO3-CDS,CDS-NIS2,NANBO3-NIS2)有助于减少载体的重组。此外,原位形成的NIS2纳米颗粒可以用作氢化的活性位点。所有这些因素诱导为制备的制备的三元光催化剂改善的光催化活性。

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