Implementation of ZnSnO3 nanosheets and their RE (Er, Eu, and Pr) materials: Enhanced photocatalytic activity

被引:33
作者
Gnanamoorthy, G. [1 ]
Ramar, K. [2 ]
Padmanaban, A. [1 ]
Yadav, Virendra Kumar [3 ]
Babu, K. Suresh [1 ]
Karthikeyan, V [1 ]
Narayanan, V [1 ]
机构
[1] Univ Madras, Dept Inorgan Chem, Guindy Campus, Chennai 600025, Tamil Nadu, India
[2] Jamal Mohamed Coll, Tiruchirappalli 620020, Tamil Nadu, India
[3] Cent Univ Gujarat, Sch Nano Sci, Gandhinagar 382030, Gujarat, India
关键词
ZnSnO3; ZnSnO3@Er; ZnSnO3@Eu and ZnSnO3@Pr; Hydrothermal method; Phenol degradation; Photocatalyst; VISIBLE-LIGHT; ANODE MATERIALS; ZINC STANNATE; ZN2SNO4; DEGRADATION; PERFORMANCE; NANOPARTICLES; FABRICATION; NANOWIRES; GROWTH;
D O I
10.1016/j.apt.2019.12.028
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
ZnSnO3, ZnSnO3@Er, ZnSnO3@Eu, and ZnSnO3@Pr materials were synthesized by a hydrothermal method, these active materials characterized by XRD, Raman, DRS-UV, FT-IR, BET surface areas and Scanning electron microscopy studies. The ZnSnO3 nanosheets meta-stable form was confirmed by XRD. Here, addressing to the pure and doped materials functional groups were evaluated by FT-IR spectroscopy. ZnSnO3, ZnSnO3@Er, ZnSnO3@Eu, and ZnSnO3@Pr rotational vibrations frequency modes were predicted by the Raman spectroscopy. Our results are marvelously, the obtained bandgap energies at 3.5 eV for pure sample and ZnSnO3@Er, ZnSnO3@Eu and ZnSnO3@Pr energies at 3.06 eV, 3.04 eV and 3.02 eV. The synthesized pure samples get a sheet-like morphology and doped for RE metals than morphology was changing for nanocubes. We assess for all samples that were focused on photocatalytic dye degradation for Methylene blue dye; hence, we are discussing these approaches, ZnSnO3@Pr/Methylene blue sample was a great improvement and high decolorization efficiency compared with ZnSnO3@Er, ZnSnO3@Eu nanocubes. The ZnSnO3@Pr sample surface area was investigated by BET analysis. In addition, we are testing the phenol degradation with wastewater. The ZnSnO3@Er, ZnSnO3@Eu catalysts were determined to the less efficiency when comparing to the ZnSnO3@Pr material. The ZnSnO3@Pr material results have more efficiency and a very good recyclable stability nature. (C) 2020 The Society of Powder Technology Japan. Published by Elsevier B.V.
引用
收藏
页码:1209 / 1219
页数:11
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