首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Noble metal-free 0D-1D NiSx/CdS nano-composites toward highly efficient photocatalytic contamination removal and hydrogen evolution under visible light
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Noble metal-free 0D-1D NiSx/CdS nano-composites toward highly efficient photocatalytic contamination removal and hydrogen evolution under visible light

机译:无高效的无金属0D-1D NISX / CDS纳米复合材料朝着高效的光催化污染除去和氢气进化在可见光下

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The development of stable noble metal-free photocatalysts with efficient separation and transportation of the photogenerated electrons-holes is of crucial importance for promoting the application of photocatalysis technology. Herein, we propose an electron transfer strategy by reasonable design and fabrication of novel 0D NiSx nanosheets as a co-catalyst on the surface of 1D CdS nanorods (CdS-NRs) to enhance photocatalytic hydrogen evaluation and contamination (Cr(vi), rhodamine B and bisphenol A) removal in water. Under visible light irradiation, the 0D-1D NiSx/CdS-NR nanocomposite with 1.5% NiSx loading gave a hydrogen evolution rate of 5.98 mmol h(-1) g(-1), which is about 5.3 times and 1.9 times higher than that of the native CdS-NRs and the optimal 1% Pt/CdS-NRs, respectively. Notably, good stability in the recycling test and a high apparent quantum efficiency of about 69.9% at 420 nm were also obtained. The 1.5% NiSx/CdS-NRs exhibited enhanced photocatalytic contamination degradation efficiency of about 2 times higher than pure CdS-NRs. In this hybrid photocatalyst, 0D NiSx nanosheets came into intimate interfacial contact with the surface of 1D CdS-NRs and played a similar role as noble metals, which could effectively improve the separation, transportation efficiencies and lifetime of photogenerated charge, and thus enhance the photocatalytic performance of CdS-NRs with more efficient conversion of solar energy. This work shows not only a possibility for the utilization of noble metal-free NiSx as a co-catalyst in the photocatalysis, but also provides new insight into the design and fabrication of high-performance composite photocatalysts (such as NiSx/g-C3N4 and NiSx/Zn3In2S6).
机译:具有有效分离和传输光静电电子孔的稳定贵金属光催化剂的发展对于促进光催化技术的应用至关重要。在此,我们通过合理的设计和制造在1D CDS纳米棒(CDS-NRS)表面上作为辅助催化剂的合理设计和制造来提出电子转移策略,以增强光催化氢评价和污染(Cr(VI),罗丹明B.和双酚A)在水中去除。在可见光照射下,0D-1D NISX / Cds-NR纳米复合材料,具有1.5%NISX负载,得到5.98mmol H(-1)G(-1)的氢进化速率,比比该为5.98mmol H(-1)G(-1)的氢演化速率为约5.3倍和1.9倍。本机CDS-NRS和最佳1%PT / CDS-NRS分别。值得注意的是,还获得了再循环试验的良好稳定性,并且在420nm下也得到了约69.9%的高表观量子效率。 1.5%NISX / CDS-NRS表现出增强的光催化污染降解效率约为纯CDS-NR的2倍。在该杂交光催化剂中,0D NISX纳米片与1D CDS-NRS的表面进行了贴心的界面接触,并与贵金属相似,可以有效地改善光生电电荷的分离,运输效率和寿命,从而提高光催化剂CDS-NRS对太阳能更有效转换的CDS-NRS的性能。该工作不仅可以利用贵金属NISX作为光催化剂中的助催化剂的可能性,而且还提供了对高性能复合光催化剂的设计和制造的新洞察(如NISX / G-C3N4和NISX / ZN3IN2S6)。

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