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research article

A comprehensive study of structure and properties of nanocrystalline zinc peroxide

Bocharov, Dmitry
•
Chesnokov, Andrei
•
Chikvaidze, George
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January 1, 2022
Journal Of Physics And Chemistry Of Solids

Nanocrystalline zinc peroxide (nano-ZnO2) was synthesized through a hydrothermal process and comprehensively studied using several experimental techniques. Its crystal structure was characterized by X-ray diffraction, and the average crystallite size of 22 nm was estimated by Rietveld refinement. The temperature-dependent local environment around zinc atoms was reconstructed using reverse Monte Carlo (RMC) analysis from the Zn K-edge X-ray absorption spectra. The indirect band gap of about 4.6 eV was found using optical absorption spectroscopy. Lattice dynamics of nano-ZnO2 was studied by infrared and Raman spectroscopy. In situ Raman measurements indicate the stability of nano-ZnO2 up to 250 degrees C above which it decomposes into ZnO and O-2. The obtained experimental results were supported by first-principles density functional theory (DFT) calculations.

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Type
research article
DOI
10.1016/j.jpcs.2021.110318
Web of Science ID

WOS:000701855200005

Author(s)
Bocharov, Dmitry
Chesnokov, Andrei
Chikvaidze, George
Gabrusenoks, Jevgenijs
Ignatans, Reinis  
Kalendarev, Robert
Krack, Matthias
Kundzins, Karlis
Kuzmin, Alexei
Mironova-Ulmane, Nina
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Date Issued

2022-01-01

Publisher

PERGAMON-ELSEVIER SCIENCE LTD

Published in
Journal Of Physics And Chemistry Of Solids
Volume

160

Article Number

110318

Subjects

Chemistry, Multidisciplinary

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Physics, Condensed Matter

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Chemistry

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Physics

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zno2

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x-ray diffraction

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x-ray absorption spectroscopy

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infrared spectroscopy

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raman spectroscopy

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first-principles calculations

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zno2 nanoparticles synthesis

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x-ray

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optical-properties

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thermal-decomposition

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thin-films

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oxide nanoparticles

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laser-ablation

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temperature

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transformation

•

frequencies

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
INE  
Available on Infoscience
January 31, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/185008
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