Synergistic Effect of High-Performance N,S-TiO2/N,S-RGO Nanocomposites for Photoelectrochemical Water Oxidation

被引:9
作者
Farghali, Ahmed A. [1 ]
El-Dek, S., I [1 ]
Elbakkay, Mohamed H. [1 ]
El Rouby, Waleed M. A. [1 ]
机构
[1] Beni Suef Univ, Fac Postgrad Studies Adv Sci PSAS, Mat Sci & Nanotechnol Dept, Bani Suwayf 62511, Egypt
关键词
GRAPHENE QUANTUM DOTS; EXPOSED; 001; FACETS; DOPED TIO2; ANATASE TIO2; HYDROTHERMAL SYNTHESIS; TITANATE NANOTUBES; HYDROGEN EVOLUTION; TITANIUM-DIOXIDE; NITROGEN; SULFUR;
D O I
10.1149/2162-8777/ab7884
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Nitrogen and sulfur codoped mesoporous anatase-brookite biphasic TiO2 anchored on surface of nitrogen and sulfur codoped reduced graphite oxide nanocomposites (N,S-TiO2/N,S-RGO) were easily prepared via a simple hydrothermal reaction process. XRD and Raman revealed anatase and brookite mixed phases. Also, the selected area electron diffraction (SAED) and the fast Fourier transform (FFT), from HRTEM measurements, indicated the presence of the anatase and brookite two phases. XPS showed the incorporation of N and S in both TiO2 matrix and carbon framework structure of RGO. The N,S-TiO2/N,S-RGO photoanodes exhibited an excellent photoelectrochemical (PEC) water oxidation performance. The highest photocurrent density reached 1.1 mA cm(-2) for the N,S-TiO2/N,S-RGO((0.1)) nanocomposite photoanode which is 6 times enhancement greater than bare TiO2 and 5 times enhancement than the N-TiO2/N-RGO((0.1)) (the same GO ratio) at the same potential. These are considered significant promising results in comparison with our previous reported S-TiO2/S-RGO nanocomposite which revealed only 3 times enhancement in photocurrent density than bare TiO2. (C) 2020 The Electrochemical Society ("ECS"). Published on behalf of ECS by IOP Publishing Limited.
引用
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页数:14
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