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N, S-Codoped TiO2/Fe2O3 Heterostructure Assemblies for Electrochemical Degradation of Crystal Violet Dye
被引:0
|作者:
Sree, Pooja Palukuru
[1
]
Priya, Vishnu Devangam A.
[1
]
Kumar, Dilip Behara
[1
]
机构:
[1] JNTUA Coll Engn, Dept Chem Engn, Ananthapuramu, India
来源:
IRANIAN JOURNAL OF CHEMISTRY & CHEMICAL ENGINEERING-INTERNATIONAL ENGLISH EDITION
|
2020年
/
39卷
/
02期
关键词:
Type-I Heterostructure;
TiO2;
Fe2O3;
Crystal violet dye;
BORON-DOPED DIAMOND;
CHARGE-CARRIER SEPARATION;
HYDROGEN-PRODUCTION;
TIO2;
WATER;
ALPHA-FE2O3;
PHOTOCATALYSTS;
MECHANISMS;
INTERFACE;
RADICALS;
D O I:
10.30492/IJCCE.2020.33368
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
In contemporary research, "Heterostructure" assemblies play an important role in energy conversion systems, wherein the composite assemblies facilitate faster charge carrier transport across the material interfaces. The improved/enhanced efficiency metrics in these systems (electro/photo-electrochemical processes/devices) is due to synergistic interaction and synchronized charge transport across material interfaces. Herein, we report Type-I Heterostructure consists of N, S doped TiO2 and Fe2O3 for electrochemical crystal violet dye degradation studies. Synthesized N-S codoped TiO2/Fe2O3 composite heterostructured assemblies were fabricated on Titanium (Ti) substrate and used for electrochemical analysis. Complete decolorization was achieved with all the fabricated electrodes and a higher rate of degradation was achieved with the composite electrode (Ti/TiO2/Fe2O3) in comparison to individual electrodes (bare Ti, Ti/TiO2, Ti/Fe2O3). Further, a probabilistic mechanism of degradation is proposed in support of the hypothesis. The outcomes of present work will have a profound effect on doped semiconductor heterostructure assemblies in the degradation of complex dye molecules of industrial outlets.
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页码:171 / 180
页数:10
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