Synthesis of reduced graphene oxide decorated with Sn/Na doped TiO2 nanocomposite: a photocatalyst for Evans blue dye degradation

被引:0
|
作者
K. S. Jithendra Kumara
G. Krishnamurthy
Prabhaker Walmik
Satish Naik
R. S. Priya Rani
Nagargaja Naik
机构
[1] Sahyadri Science College (A constituent college of Kuvempu University),Department of Studies and Research in Chemistry
[2] Kuvempu University,Department of Studies and Research in Chemistry
[3] University of Mysore,Department of Studies and Research in Chemistry
来源
Emergent Materials | 2021年 / 4卷
关键词
Titanium dioxide (TiO; ); Photocatalyst; Evans blue; Dye degradation; Tin-sodium doping;
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中图分类号
学科分类号
摘要
The major drawbacks associated with existed nanophotocatalyst are mild response, narrow spectrum range, hence speedy recombination of electrons, and holes subsequently less number of charge separation which leads to lower the overall efficiency of the catalyst. In order to overcome from this drawback, we have synthesized a nano-spherical shaped reduced graphene oxide NS-rGO (NC1) decorated with modified tin and sodium-doped titanium oxide nanocomposite NS-rGO@Sn/Na-doped-TiO2 (NC2). The synthesized NC2 decreases the probability of recombination of electrons and holes which is the necessary requirement for any photocatalyst and is rather, more advantageous compared to the reported photocatalyst which have demerits of speedy recombination of electrons and holes. The newly synthesized NC2 is used as an efficient photocatalyst for Evans blue dye degradation. This photocatalyst exhibits significant progress on light absorption, narrow band gap, active charge collection, and separation. The photocatalytic degradation of NC2 showed high activity in a short duration of time. The geometry of the NS-rGO facilitates collection and transporting of electrons in an effective photocatalytic dye degradation process. The investigation may lead to the development of novel photocatalyst for the degradation of toxic dye which is discharged into sewage from various chemical industries.
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页码:457 / 468
页数:11
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