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Title: A novel microporous amorphous-ZnO@TiO₂/graphene ternary nanocomposite with enhanced photocatalytic activity
Authors: Guo, SY
Dai, JG 
Zhao, TJ
Hou, SD
Zhang, P
Wang, PG
Sun, GX
Issue Date: 2017
Source: RSC advances, 2017, v. 7, no. 58, p. 36787-36792
Abstract: Rational design and synthesis of graphene-based photoactive heterostructures is in great demand for various applications. Herein, a novel microporous amorphous-ZnO@TiO₂/graphene heterostructure was developed via a facile approach for the first time. This heterostructure possesses excellent characteristics such as high surface area (336 m2 g−1), excellent mobility of charge carriers, and enhanced photocatalytic activity. The higher photocatalytic activity of the developed novel microporous amorphous-ZnO@TiO₂/graphene hybrid was demonstrated through the degradation of water pollutants, MB and RhB. The mechanistic analysis result shows that the numerous unsaturated sites on the surface of amorphous-ZnO@TiO₂ facilitate the separation of photogenerated electrons and holes, and graphene mainly acts as an electron transfer bridge. The combination of amorphous-ZnO@TiO₂ and graphene constructs a new class of photocatalysts and also has a synergistic effect on improving the photocatalytic activity. The resultant amorphous-ZnO@TiO₂/graphene ternary nanocomposite as a novel high performance photocatalyst is of a great potential for water pollution treatment due to its high catalytic activity, low cost, long-term stability, and easy recovery.
Publisher: Royal Society of Chemistry
Journal: RSC advances 
EISSN: 2046-2069
DOI: 10.1039/c7ra06232j
Rights: This journal is © The Royal Society of Chemistry 2017
This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (http://creativecommons.org/licenses/by/3.0/).
The following publication Guo, S. Y., Dai, J. G., Zhao, T. J., Hou, S. D., Zhang, P., Wang, P. G., & Sun, G. X. (2017). A novel microporous amorphous-ZnO@ TiO 2/graphene ternary nanocomposite with enhanced photocatalytic activity. RSC advances, 7(58), 36787-36792 is available at https://doi.org/10.1039/C7RA06232J.
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