LICP OpenIR  > 羰基合成与选择氧化国家重点实验室(OSSO)
Enhanced surface electron transfer by fabricating a core/shell Ni@NiO cluster on TiO2 and its role on high efficient hydrogen generation under visible light irradiation
DepartmentOSSO国家重点实验室
Cui ET(崔恩田)1,2; Lu GX(吕功煊)1; Lv GX(吕功煊)
2014
Source PublicationInternational Journal of Hydrogen Energy
ISSN0360-3199
Volume39Issue:17Pages:8959-8968
Abstract

A Ni@NiO core/shell cluster was fabricated on TiO2 surface (Ni@NiO/TiO2) and its roles on surface electron transfer and the enhancement on hydrogen evolution under visible light irradiation were investigated. For a comparison, the Ni/TiO2 and NiO/TiO2 catalysts were fabricated, respectively. By photosensitization using Eosin Y as an antenna molecule, (1.6 wt%)Ni@NiO/TiO2 exhibited the highest activity (364.1 μmol h−1) in comparison with (1.6 wt%)Ni/TiO2 and (1.6 wt%)NiO/TiO2 and the corresponding apparent quantum efficiency reached 28.6% at 460 nm. The photoluminescence spectra and photoelectrochemical characterization results confirmed that the Ni@NiO core/shell structure could promote the photogenerated electrons transferring from TiO2 conduction band to Ni@NiO clusters, resulting in the quicker separation of electron–hole pairs. In addition, part of NiO shell can be reduced into metallic Ni during the photoreaction and vice versa. Cyclic voltammogram characterization verified that the transformation between Ni and NiO was a dynamic balance process, which can not only provide reacting channels for electrons and protons but also ensure the photocatalytic hydrogen evolution proceeding continuously. This study discloses structure-dependent effect of non-noble metal cocatalyst on semiconductor photocatalysts in photocatalytic water reduction, and gives an insight into designing high-efficient non-noble metal/semiconductor hybrid photocatalysts.

KeywordNi-nio Core/shell Structure Enhanced Surface Electron Transfer Fermi Level Photocatalytic Hydrogen Evolution Visible Light Irradiation
Subject Area物理化学与绿色催化
DOI10.1016/j.ijhydene.2014.03.258
Funding Organizationthe National Natural Science Foundation of China, China (21173242);973 Program and 863 Program of Ministry of Sciences and Technology of China, China (Grant Nos. 2013CB632404;2012AA051501;2009AA05Z117)
Indexed BySCI
If3.313
Language英语
Funding Project环境催化与氢能源组
compositor第一作者单位
Citation statistics
Cited Times:48[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.licp.cn/handle/362003/20452
Collection羰基合成与选择氧化国家重点实验室(OSSO)
Corresponding AuthorLv GX(吕功煊)
Affiliation1.Chinese Acad Sci, Lanzhou Inst Chem Phys, State Key Lab Oxo Synth & Select Oxidat, Lanzhou 730000, Peoples R China
2.Univ Chinese Acad Sci, Beijing 10080, Peoples R China
Recommended Citation
GB/T 7714
Cui ET,Lu GX,Lv GX. Enhanced surface electron transfer by fabricating a core/shell Ni@NiO cluster on TiO2 and its role on high efficient hydrogen generation under visible light irradiation[J]. International Journal of Hydrogen Energy,2014,39(17):8959-8968.
APA Cui ET,Lu GX,&吕功煊.(2014).Enhanced surface electron transfer by fabricating a core/shell Ni@NiO cluster on TiO2 and its role on high efficient hydrogen generation under visible light irradiation.International Journal of Hydrogen Energy,39(17),8959-8968.
MLA Cui ET,et al."Enhanced surface electron transfer by fabricating a core/shell Ni@NiO cluster on TiO2 and its role on high efficient hydrogen generation under visible light irradiation".International Journal of Hydrogen Energy 39.17(2014):8959-8968.
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