Publication:

The mechanism of Fe induced bond stability of uranyl(v)

cris.lastimport.scopus

2024-08-07T11:35:00Z

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296169

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7007110581

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SCI-SB-MM

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ISIC

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SB

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EPFL

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M-9457-2017

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166619

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224698

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271282

cris.virtual.unitId

12966

cris.virtual.unitManager

Sivula, Kevin

cris.virtual.unitManager

Mazzanti, Marinella

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Mazzanti, Marinella

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datacite.rights

openaccess

dc.contributor.author

Vitova, Tonya

dc.contributor.author

Faizova, Radmila

dc.contributor.author

Amaro-Estrada, Jorge, I

dc.contributor.author

Maron, Laurent

dc.contributor.author

Pruessmann, Tim

dc.contributor.author

Neill, Thomas

dc.contributor.author

Beck, Aaron

dc.contributor.author

Schacherl, Bianca

dc.contributor.author

Tirani, Farzaneh Fadaei

dc.contributor.author

Mazzanti, Marinella

dc.date.accessioned

2022-08-29T02:35:14

dc.date.available

2022-08-29T02:35:14

dc.date.created

2022-08-29

dc.date.issued

2022-08-05

dc.date.modified

2025-02-12T01:39:56.297904Z

dc.description.abstract

The stabilization of uranyl(v) (UO21+) by Fe(ii) in natural systems remains an open question in uranium chemistry. Stabilization of UVO21+ by Fe(ii) against disproportionation was also demonstrated in molecular complexes. However, the relation between the Fe(ii) induced stability and the change of the bonding properties have not been elucidated up to date. We demonstrate that U(v) - oaxial bond covalency decreases upon binding to Fe(ii) inducing redirection of electron density from the U(v) - oaxial bond towards the U(v) - equatorial bonds thereby increasing bond covalency. Our results indicate that such increased covalent interaction of U(v) with the equatorial ligands resulting from iron binding lead to higher stability of uranyl(v). For the first time a combination of U M4,5 high energy resolution X-ray absorption near edge structure (HR-XANES) and valence band resonant inelastic X-ray scattering (VB-RIXS) and ab initio multireference CASSCF and DFT based computations were applied to establish the electronic structure of iron-bound uranyl(v).

dc.description.sponsorship

GCC

dc.identifier.doi

10.1039/d2sc03416f

dc.identifier.isi

WOS:000841164100001

dc.identifier.uri

https://infoscience.epfl.ch/handle/20.500.14299/190385

dc.publisher

ROYAL SOC CHEMISTRY

dc.publisher.place

Cambridge

dc.relation

https://infoscience.epfl.ch/record/296169/files/d2sc03416f.pdf

dc.relation.issn

2041-6520

dc.relation.issn

2041-6539

dc.relation.journal

Chemical Science

dc.source

WoS

dc.subject

Chemistry, Multidisciplinary

dc.subject

Chemistry

dc.subject

electronic-structure

dc.subject

reduction

dc.subject

u(vi)

dc.subject

complexes

dc.subject

functionalization

dc.subject

chemistry

dc.subject

covalency

dc.subject

wyartite

dc.subject

series

dc.subject

ion

dc.title

The mechanism of Fe induced bond stability of uranyl(v)

dc.type

text::journal::journal article::research article

dspace.entity.type

Publication

dspace.file.type

publisher

dspace.legacy.oai-identifier

oai:infoscience.epfl.ch:296169

epfl.curator.email

jorge.rodriguesdematos@epfl.ch

epfl.lastmodified.email

marinella.mazzanti@epfl.ch

epfl.legacy.itemtype

Journal Articles

epfl.legacy.submissionform

ARTICLE

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SB

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OpenAIREv4

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fulltext

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article

epfl.peerreviewed

REVIEWED

epfl.publication.version

http://purl.org/coar/version/c_970fb48d4fbd8a85

epfl.writtenAt

EPFL

oaire.citation.endPage

11047

oaire.citation.issue

37

oaire.citation.startPage

11038

oaire.citation.volume

13

oaire.licenseCondition

CC BY-NC

oaire.version

http://purl.org/coar/version/c_970fb48d4fbd8a85

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