Enhancing the photocatalytic performance of surface - Treated SnO2 hierarchical nanorods against methylene blue dye under solar irradiation and biological degradation
V. Perumal
1
,
C. Inmozhi
2
,
R. Uthrakumar
3
,
Rintu Robert
4
,
M Chandrasekar
5
,
S. Beer Mohamed
6
,
Shehla Honey
7, 8, 9
,
Raja Annamalai
10
,
Fahd A Al Mekhlafi
11
,
K. Kaviyarasu
9, 12
1
Department of Physics, Government Arts College (Autonomous), Salem, 636007, Tamil Nadu, India.
|
2
Department of Physics, Government Arts College for Women , Salem, 636008, Tamil Nadu, India
|
3
Department of Physics, Government Arts College (Autonomous), Salem, 636007, Tamil Nadu, India
|
4
Department of Physics, Government Arts College for Men, Krishnagiri, 635001, Tamil Nadu, India
|
Publication type: Journal Article
Publication date: 2022-06-01
scimago Q1
wos Q1
SJR: 1.822
CiteScore: 14.7
Impact factor: 7.7
ISSN: 00139351, 10960953
PubMed ID:
35092741
Biochemistry
General Environmental Science
Abstract
Surfactant -treated tin oxide (SnO2) hierarchical nanorods were successfully synthesized through hydrothermal technique. The X-ray diffraction analysis showed the prepared SnO2 possesses tetragonal rutile structure having appreciable crystallinity with crystallite sizes in the range of 110 nm-120 nm. UV-visible diffuse reflectance absorption spectra confirm that the better visible light absorption band of SnO2 hierarchical nanorods have red shift compared to the pure SnO2. Fourier transform infrared spectroscopy (FTIR) study evident that the as-prepared SnO2 nanorods encompass the characteristic bands of SnO2 nanostructures. The morphological analyses of prepared materials were performed by FESEM, which shows that hierarchal nanorods and complex nanostructures. EDX analyses disclose all the samples are composed of Sn and O elements. The photocatalytic performance of the prepared surfactant treated SnO2 hierarchical nanorods was evaluated using methylene blue (MB) dye removal under direct natural sunlight. Recycling experiment results of CTAB - SnO2 nanorods and photocatalytic reaction mechanism also discussed in detail.
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Citations from 2024:
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Perumal V. et al. Enhancing the photocatalytic performance of surface - Treated SnO2 hierarchical nanorods against methylene blue dye under solar irradiation and biological degradation // Environmental Research. 2022. Vol. 209. p. 112821.
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Perumal V., Inmozhi C., Uthrakumar R., Robert R., Chandrasekar M., Mohamed S. B., Honey S., Annamalai R., Al Mekhlafi F. A., Kaviyarasu K. Enhancing the photocatalytic performance of surface - Treated SnO2 hierarchical nanorods against methylene blue dye under solar irradiation and biological degradation // Environmental Research. 2022. Vol. 209. p. 112821.
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TY - JOUR
DO - 10.1016/j.envres.2022.112821
UR - https://doi.org/10.1016/j.envres.2022.112821
TI - Enhancing the photocatalytic performance of surface - Treated SnO2 hierarchical nanorods against methylene blue dye under solar irradiation and biological degradation
T2 - Environmental Research
AU - Perumal, V.
AU - Inmozhi, C.
AU - Uthrakumar, R.
AU - Robert, Rintu
AU - Chandrasekar, M
AU - Mohamed, S. Beer
AU - Honey, Shehla
AU - Annamalai, Raja
AU - Al Mekhlafi, Fahd A
AU - Kaviyarasu, K.
PY - 2022
DA - 2022/06/01
PB - Elsevier
SP - 112821
VL - 209
PMID - 35092741
SN - 0013-9351
SN - 1096-0953
ER -
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@article{2022_Perumal,
author = {V. Perumal and C. Inmozhi and R. Uthrakumar and Rintu Robert and M Chandrasekar and S. Beer Mohamed and Shehla Honey and Raja Annamalai and Fahd A Al Mekhlafi and K. Kaviyarasu},
title = {Enhancing the photocatalytic performance of surface - Treated SnO2 hierarchical nanorods against methylene blue dye under solar irradiation and biological degradation},
journal = {Environmental Research},
year = {2022},
volume = {209},
publisher = {Elsevier},
month = {jun},
url = {https://doi.org/10.1016/j.envres.2022.112821},
pages = {112821},
doi = {10.1016/j.envres.2022.112821}
}