Open Access
To form or not to form: PuO2 nanoparticles at acidic pH
Evgeny Gerber
1, 2, 3
,
Anna Romanchuk
1
,
Stephan Weiss
3
,
Stephen Bauters
2, 3
,
Alexander Egorov
1
,
Kristina Kvashnina
1, 2, 3
2
4
Synchrotron SOLEIL, L'Orme des Merisiers, Saint Aubin BP 48, 91192 Gif-sur-Yvette, France
|
Publication type: Journal Article
Publication date: 2022-03-11
scimago Q1
wos Q1
SJR: 1.201
CiteScore: 9.8
Impact factor: 5.1
ISSN: 20518153, 20518161
PubMed ID:
35520632
Materials Science (miscellaneous)
General Environmental Science
Abstract
The aim of this study is to synthesize PuO2 nanoparticles (NPs) at low pH values and characterize the materials using laboratory and synchrotron-based methods. Properties of the PuO2 NPs formed under acidic conditions (pH 1-4) are explored here at the atomic scale. High-resolution transmission electron microscopy (HRTEM) is applied to characterize the crystallinity, morphology and size of the particles. It is found that 2 nm crystalline NPs are formed with a PuO2 crystal structure. High energy resolution fluorescence detected (HERFD) X-ray absorption spectroscopy at the Pu M4 edge has been used to identify the Pu oxidation states and recorded data are analysed using the theory based on the Anderson impurity model (AIM). The experimental data obtained on NPs show that the Pu(iv) oxidation state dominates in all NPs formed at pH 1-4. However, the suspension at pH 1 demonstrates the presence of Pu(iii) and Pu(vi) in addition to the Pu(iv), which is associated with redox dissolution of PuO2 NPs under acidic conditions. We discuss in detail the mechanism that affects the PuO2 NPs synthesis under acidic conditions and compare it with one in neutral and alkaline conditions. Hence, the results shown here, together with the first Pu M4 HERFD data on PuF3 and PuF4 compounds, are significant for the colloid facilitated transport governing the migration of plutonium in a subsurface environment.
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Metrics
11
Total citations:
11
Citations from 2024:
6
(54%)
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MLA
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GOST
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Gerber E. et al. To form or not to form: PuO2 nanoparticles at acidic pH // Environmental Science: Nano. 2022. Vol. 9. No. 4. pp. 1509-1518.
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Gerber E., Romanchuk A., Weiss S., Kuzenkova A., Hunault M. O. J. Y., Bauters S., Egorov A., Butorin S. M., Kalmykov S. N., Kvashnina K. To form or not to form: PuO2 nanoparticles at acidic pH // Environmental Science: Nano. 2022. Vol. 9. No. 4. pp. 1509-1518.
Cite this
RIS
Copy
TY - JOUR
DO - 10.1039/d1en00666e
UR - https://xlink.rsc.org/?DOI=D1EN00666E
TI - To form or not to form: PuO2 nanoparticles at acidic pH
T2 - Environmental Science: Nano
AU - Gerber, Evgeny
AU - Romanchuk, Anna
AU - Weiss, Stephan
AU - Kuzenkova, Anastasiia
AU - Hunault, Myrtille O. J. Y.
AU - Bauters, Stephen
AU - Egorov, Alexander
AU - Butorin, Sergei M.
AU - Kalmykov, Stepan N.
AU - Kvashnina, Kristina
PY - 2022
DA - 2022/03/11
PB - Royal Society of Chemistry (RSC)
SP - 1509-1518
IS - 4
VL - 9
PMID - 35520632
SN - 2051-8153
SN - 2051-8161
ER -
Cite this
BibTex (up to 50 authors)
Copy
@article{2022_Gerber,
author = {Evgeny Gerber and Anna Romanchuk and Stephan Weiss and Anastasiia Kuzenkova and Myrtille O. J. Y. Hunault and Stephen Bauters and Alexander Egorov and Sergei M. Butorin and Stepan N. Kalmykov and Kristina Kvashnina},
title = {To form or not to form: PuO2 nanoparticles at acidic pH},
journal = {Environmental Science: Nano},
year = {2022},
volume = {9},
publisher = {Royal Society of Chemistry (RSC)},
month = {mar},
url = {https://xlink.rsc.org/?DOI=D1EN00666E},
number = {4},
pages = {1509--1518},
doi = {10.1039/d1en00666e}
}
Cite this
MLA
Copy
Gerber, Evgeny, et al. “To form or not to form: PuO2 nanoparticles at acidic pH.” Environmental Science: Nano, vol. 9, no. 4, Mar. 2022, pp. 1509-1518. https://xlink.rsc.org/?DOI=D1EN00666E.