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首页> 外文期刊>Journal of Colloid and Interface Science >Enhanced photocatalytic H-2 production under visible light on composite photocatalyst (CdS/NiSe nanorods) synthesized in aqueous solution
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Enhanced photocatalytic H-2 production under visible light on composite photocatalyst (CdS/NiSe nanorods) synthesized in aqueous solution

机译:在水溶液中合成的复合光催化剂(CDS / NISE纳米棒)上可见光下的显着光催化H-2生产

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摘要

Cocatalysts play a critical role in the activity and stability of photocatalytic systems. Currently, efficient cocatalysts mainly comprise of expensive noble metals. Herein we report a composite photocatalyst consisting of CdS nanorods (NRs) and noble-metal-free cocatalyst NiSe, which efficiently enhances the hydrogen production activity of CdS NRs under visible light. NiSe was synthesized through a facile aqueous solution method and CdS/NiSe NRs composites were prepared by in situ deposition of NiSe on CdS NRs. This provides increased contact between cocatalyst and photosensitizer leading to enhanced electron transfer at the interface of NiSe and CdS. The current photocatalytic system gave the highest hydrogen evolution rate of 340 mu mol h(-1) under optimal conditions. The enhanced stability of the system was observed for 30 h of irradiation resulting in 14 mmol of hydrogen evolution. The highest AQY of 12% was observed using the 420 nm monochromatic light. In addition, CdS/NiSe NRs showed significant higher H-2 evolution rate than that of 1.0 wt% loaded CdS/Pt NRs proving NiSe as highly efficient cocatalyst. Photoluminescence spectra and the photocurrent response were used to confirm the efficient charge transfer at the interface of NiSe and CdS nanorods. The work presented here demonstrates the successful use of an inexpensive, non-noble-metal cocatalyst for enhanced photocatalytic hydrogen production. (C) 2019 Elsevier Inc. All rights reserved.
机译:助催化剂起到催化活性系统的关键作用和稳定性。目前,高效的助催化剂主要包括昂贵的贵金属。本文我们报告一个复合光催化剂由CdS纳米棒(NRS)和贵金属 - 自由助催化剂NISE,这有效地提高了在可见光下的CdS卢比的产氢活性。 NISE物通过简便水溶液方法和CdS合成/通过在硫化镉NRs的NISE的原位沉积制备NISE NRs的复合材料。这提供了助催化剂和光敏剂之间增加的接触导致在NISE和CdS的界面增强的电子转移。当前的光催化系统得到的340微摩尔小时最高氢速率(-1)在最佳条件下。观察到产生14毫摩尔氢气放出的照射30小时的增强了系统的稳定性。使用420nm的单色光,观察到的12%的最高AQY。此外,CDS / NISE NRs的显示显著更高H-2释放速率比的1.0重量%的加载的CdS /铂NRs的证明NISE作为高效助催化剂。光致发光光谱和光电流响应被用来确认在NISE和CdS纳米棒的界面处的有效的电荷转移。这里提出的工作表明成功使用以增强光催化制氢一种廉价的,非贵金属助催化剂。 (c)2019 Elsevier Inc.保留所有权利。

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