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助催化剂与主体光催化剂共生以提高太阳能到氢能的转换效率

Intergrowth of Cocatalysts with Host Photocatalysts for Improved Solar-to-Hydrogen Conversion.

作者信息

Qin Zhixiao, Chen Yubin, Wang Xixi, Guo Xu, Guo Liejin

机构信息

International Research Center for Renewable Energy, State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University , Shaanxi 710049, Peoples' Republic of China.

出版信息

ACS Appl Mater Interfaces. 2016 Jan 20;8(2):1264-72. doi: 10.1021/acsami.5b09943. Epub 2016 Jan 7.

DOI:10.1021/acsami.5b09943
PMID:26711355
Abstract

In the field of photocatalytic hydrogen generation, cocatalysts play a vital role in enhanced properties. Delicate control of the physicochemical properties of cocatalysts and systematic optimization of the coupling between cocatalysts and host photocatalysts are essential. Herein, a simple one-step hydrothermal method was proposed to synthesize noble-metal-free NiSx/CdS photocatalysts for the first time. Time-dependent growth studies revealed that NiSx cocatalysts and CdS host photocatalysts were intergrown with each other in the one-step hydrothermal process. Compared with NiSx@CdS photocatalysts prepared by the common two-step method, the intergrowth effect induced close contact between NiSx and CdS, as well as smaller size and better dispersity of NiSx nanoparticles. These specific characters of NiSx/CdS finally resulted in efficient charge separation and rapid surface reaction, giving rise to significantly improved photocatalytic activity with the apparent quantum efficiency at 420 nm as high as 60.4%. To our knowledge, this value is the highest efficiency for NiSx modified CdS photocatalysts and is among the best efficiencies for visible-light-driven photocatalysts. It is believed that the present work can provide a general guidance to develop an efficient heterostructured cocatalyst/photocatalyst system for hydrogen generation.

摘要

在光催化产氢领域,助催化剂对性能提升起着至关重要的作用。精确控制助催化剂的物理化学性质以及系统优化助催化剂与主体光催化剂之间的耦合至关重要。在此,首次提出了一种简单的一步水热法来合成无贵金属的NiSx/CdS光催化剂。随时间变化的生长研究表明,在一步水热过程中,NiSx助催化剂和CdS主体光催化剂相互共生。与通过常见两步法制备的NiSx@CdS光催化剂相比,共生效应使NiSx和CdS紧密接触,同时NiSx纳米颗粒尺寸更小且分散性更好。NiSx/CdS的这些特殊性质最终导致了高效的电荷分离和快速的表面反应,使得光催化活性显著提高,420nm处的表观量子效率高达60.4%。据我们所知,该值是NiSx修饰的CdS光催化剂的最高效率之一,也是可见光驱动光催化剂的最佳效率之一。相信本工作可为开发用于产氢的高效异质结构助催化剂/光催化剂体系提供一般性指导。

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