Fabrication of nano-In2 O3 phase junction by pulse alternating current synthesis for enhanced photoelectrochemical performance: Unravelling the role of synthetic conditions
Publication type: Journal Article
Publication date: 2023-04-01
scimago Q1
wos Q1
SJR: 1.034
CiteScore: 9.1
Impact factor: 5.6
ISSN: 02728842, 18733956
Materials Chemistry
Surfaces, Coatings and Films
Ceramics and Composites
Electronic, Optical and Magnetic Materials
Process Chemistry and Technology
Abstract
Rational design and controllable synthesis of materials with improved activity and stability remains one of the key challenges to be addressed in the field of photoelectrochemical water splitting. In this work, a series of nano-In2O3 (c- and c/rh-In2O3) with tunable cubic-to-rhombohedral phase ratios was obtained via pulse alternating current electrosynthesis followed by air annealing. The physicochemical characterization of In2O3 using XRD, FESEM, TEM, XPS, Raman, UV–vis DRS and BET techniques along with photoelectrochemical test indicate that synthetic conditions greatly influence on structural, morphological and optical properties. The c/rh-phase ratio was feasibly controlled by altering the nature of the electrolyte (LiCl, KCl, NaCl and Na2SO4) without adding any organic additives. The c/rh-In2O3 synthesized using NaCl aqueous electrolyte shows enhanced photoelectrochemical activity (0.35 mA/cm2 at 1.23 V vs RHE) and photoconversion efficiency (0.09%) as well as excellent long-term stability (over 7 h). The improved performance of the c/rh-In2O3 results from the constructing the well-defined phase-junction with optimal phase ratio (72% c-/28% rh-) and the high oxygen deficiency providing a synergistic effect between rh-In2O3 and c-In2O3 for more efficient separation and transfer of photogenerated charges. These results lead to a better understanding of designing metal oxide phase-junctions for photoelectrochemical applications.
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11
Total citations:
11
Citations from 2024:
5
(45.45%)
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Molodtsova T. et al. Fabrication of nano-In2O3 phase junction by pulse alternating current synthesis for enhanced photoelectrochemical performance: Unravelling the role of synthetic conditions // Ceramics International. 2023. Vol. 49. No. 7. pp. 10986-10992.
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Molodtsova T., Gorshenkov M., Kolesnikov E., Leontyev I. N., Kaichev V., Zhigunov D. M., Faddeev N., Kuriganova A., Smirnova N. Fabrication of nano-In2O3 phase junction by pulse alternating current synthesis for enhanced photoelectrochemical performance: Unravelling the role of synthetic conditions // Ceramics International. 2023. Vol. 49. No. 7. pp. 10986-10992.
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TY - JOUR
DO - 10.1016/j.ceramint.2022.11.293
UR - https://linkinghub.elsevier.com/retrieve/pii/S0272884222043309
TI - Fabrication of nano-In2O3 phase junction by pulse alternating current synthesis for enhanced photoelectrochemical performance: Unravelling the role of synthetic conditions
T2 - Ceramics International
AU - Molodtsova, Tatyana
AU - Gorshenkov, Mikhail
AU - Kolesnikov, Evgeny
AU - Leontyev, I. N.
AU - Kaichev, Vasily
AU - Zhigunov, D. M.
AU - Faddeev, Nikita
AU - Kuriganova, Alexandra
AU - Smirnova, Nina
PY - 2023
DA - 2023/04/01
PB - Elsevier
SP - 10986-10992
IS - 7
VL - 49
SN - 0272-8842
SN - 1873-3956
ER -
Cite this
BibTex (up to 50 authors)
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@article{2023_Molodtsova,
author = {Tatyana Molodtsova and Mikhail Gorshenkov and Evgeny Kolesnikov and I. N. Leontyev and Vasily Kaichev and D. M. Zhigunov and Nikita Faddeev and Alexandra Kuriganova and Nina Smirnova},
title = {Fabrication of nano-In2O3 phase junction by pulse alternating current synthesis for enhanced photoelectrochemical performance: Unravelling the role of synthetic conditions},
journal = {Ceramics International},
year = {2023},
volume = {49},
publisher = {Elsevier},
month = {apr},
url = {https://linkinghub.elsevier.com/retrieve/pii/S0272884222043309},
number = {7},
pages = {10986--10992},
doi = {10.1016/j.ceramint.2022.11.293}
}
Cite this
MLA
Copy
Molodtsova, Tatyana, et al. “Fabrication of nano-In2O3 phase junction by pulse alternating current synthesis for enhanced photoelectrochemical performance: Unravelling the role of synthetic conditions.” Ceramics International, vol. 49, no. 7, Apr. 2023, pp. 10986-10992. https://linkinghub.elsevier.com/retrieve/pii/S0272884222043309.