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SOPHA, H. SPOTZ, Z. MICHALIČKA, J. HROMÁDKO, L. BULÁNEK, R. WÁGNER, T. MACÁK, J.
Original Title
Bismuth Oxychloride Nanoplatelets by Breakdown Anodization
Type
journal article in Web of Science
Language
English
Original Abstract
Herein, the synthesis of BiOCl nanoplatelets of various dimensions is demonstrated. These materials were prepared by anodic oxidation of Bi ingots in diluted HCl under dielectric breakdown conditions, triggered by a sufficiently high anodic field. Additionally, it is shown that the use of several other common diluted acids (HNO3, H2SO4, lactic acid) resulted in the formation of various different nanostructures. The addition of NH4F to the acidic electrolytes accelerated the growth rate resulting in bismuth based nanostructures with comparably smaller dimensions and an enormous volume expansion observed during the growth. On the other hand, the addition of lactic acid to the acidic electrolytes decelerated the oxide growth rate. The resulting nanostructures were characterized using SEM, XRD and TEM. BiOCl nanoplatelets received by anodization in 1 M HCl were successfully employed for the photocatalytic decomposition of methylene blue dye and showed a superior performance compared to commercially available BiOCl powder with a similar crystalline structure, confirming its potential as a visible light photocatalyst.
Keywords
Anodization • Bismuth • Bismuth oxychloride • Nanoplatelets • Photocatalysis
Authors
SOPHA, H.; SPOTZ, Z.; MICHALIČKA, J.; HROMÁDKO, L.; BULÁNEK, R.; WÁGNER, T.; MACÁK, J.
Released
18. 1. 2019
Publisher
Wiley-VCH Verlag
ISBN
2196-0216
Periodical
ChemElectroChem
Year of study
6
Number
2
State
Federal Republic of Germany
Pages from
336
Pages to
341
Pages count
URL
https://onlinelibrary.wiley.com/doi/full/10.1002/celc.201801280
Full text in the Digital Library
http://hdl.handle.net/11012/184681
BibTex
@article{BUT150686, author="Hanna Ingrid {Sopha} and Zdeněk {Spotz} and Jan {Michalička} and Luděk {Hromádko} and Roman {Bulánek} and Tomáš {Wágner} and Jan {Macák}", title="Bismuth Oxychloride Nanoplatelets by Breakdown Anodization", journal="ChemElectroChem", year="2019", volume="6", number="2", pages="336--341", doi="10.1002/celc.201801280", issn="2196-0216", url="https://onlinelibrary.wiley.com/doi/full/10.1002/celc.201801280" }