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Photocatalytic Performance in Oxide Nanomaterials
ZHAI Yingjiao 1 #,LI Jinhua 1 *,CHU Xueying 1,XU Mingze 1,LI Xue 2,FANG Xuan 3,WEI Zhipeng 3,WANG Xiaohua 3
1.School of Science, International Joint Research Center for Nanophotonics and Biophotonics, Changchun University of Science and Technology, 7089 Wei-Xing Road, Changchun 130022, China
2. College of Information Technology, Jilin Agriculture University, 2888 Xin-Cheng Street, Changchun 130118, China
3.State key laboratory of high power semiconductor laser, Changchun University of Science and Technology, 7089 Wei-Xing Road, Changchun 130022, China
*Correspondence author
#Submitted by
Subject:
Funding: The National Natural Science Foundation of China(No.61204065, 61205193, 61307045 and 61404009), the Developing Project of Science and Technology of Jilin Province(No.20140520107JH and 20140204025GX)
Opened online:29 January 2015
Accepted by: none
Citation: ZHAI Yingjiao,LI Jinhua,CHU Xueying.Photocatalytic Performance in Oxide Nanomaterials[OL]. [29 January 2015] http://en.paper.edu.cn/en_releasepaper/content/4629681
 
 
As a result of the cumulatively environmental pollution and the worldwide fossil fuel reserves shortage, nanostructrued photocatalysts have attracted much attention as a potential solution due to their unique performance advantages. Over the past decades, different strategies for synthesis and modification of oxide materials on the nanometer scale have been developing rapidly. Therefore, it is of significance to highlight recent approaches in the development of oxide nanomaterials as activity-enhanced photocatalysts. This report presents recent research progress of the high photocatalytic activity of nanostructured photocatalysts for expansion of solar spectrum response and enhancement of charge separation efficiency. Significantly, all the researchers and their achievements in this field are making contributions to the development of catalytic industry and environment purification.
Keywords:photocatalytic;oxide nanomaterials; ZnO
 
 
 

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