Iron-based trinuclear metal-organic nanostructures on a surface with local charge accumulation

Polynuclear metal-organic coordination complexes are often inaccessible by traditional synthetic chemistry methods. Here, the authors use on-surface supramolecular chemistry to form a planar trinuclear Fe complex, in which an accumulation of electrons around the positive mixed-valence polynuclear ce...

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Main Authors: Cornelius Krull, Marina Castelli, Prokop Hapala, Dhaneesh Kumar, Anton Tadich, Martina Capsoni, Mark T. Edmonds, Jack Hellerstedt, Sarah A. Burke, Pavel Jelinek, Agustin Schiffrin
Format: Article
Language:English
Published: Nature Portfolio 2018-08-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-018-05543-4
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author Cornelius Krull
Marina Castelli
Prokop Hapala
Dhaneesh Kumar
Anton Tadich
Martina Capsoni
Mark T. Edmonds
Jack Hellerstedt
Sarah A. Burke
Pavel Jelinek
Agustin Schiffrin
author_facet Cornelius Krull
Marina Castelli
Prokop Hapala
Dhaneesh Kumar
Anton Tadich
Martina Capsoni
Mark T. Edmonds
Jack Hellerstedt
Sarah A. Burke
Pavel Jelinek
Agustin Schiffrin
author_sort Cornelius Krull
collection DOAJ
description Polynuclear metal-organic coordination complexes are often inaccessible by traditional synthetic chemistry methods. Here, the authors use on-surface supramolecular chemistry to form a planar trinuclear Fe complex, in which an accumulation of electrons around the positive mixed-valence polynuclear centre suggests a catalytically active core.
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spelling doaj.art-ff2716a9ecec41f0b9f10b8ab821f7b82022-12-21T20:36:04ZengNature PortfolioNature Communications2041-17232018-08-01911710.1038/s41467-018-05543-4Iron-based trinuclear metal-organic nanostructures on a surface with local charge accumulationCornelius Krull0Marina Castelli1Prokop Hapala2Dhaneesh Kumar3Anton Tadich4Martina Capsoni5Mark T. Edmonds6Jack Hellerstedt7Sarah A. Burke8Pavel Jelinek9Agustin Schiffrin10School of Physics & Astronomy, Monash UniversitySchool of Physics & Astronomy, Monash UniversityInstitute of Physics of the CASSchool of Physics & Astronomy, Monash UniversityAustralian SynchrotronDepartment of Physics and Astronomy, University of British ColumbiaSchool of Physics & Astronomy, Monash UniversitySchool of Physics & Astronomy, Monash UniversityDepartment of Physics and Astronomy, University of British ColumbiaInstitute of Physics of the CASSchool of Physics & Astronomy, Monash UniversityPolynuclear metal-organic coordination complexes are often inaccessible by traditional synthetic chemistry methods. Here, the authors use on-surface supramolecular chemistry to form a planar trinuclear Fe complex, in which an accumulation of electrons around the positive mixed-valence polynuclear centre suggests a catalytically active core.https://doi.org/10.1038/s41467-018-05543-4
spellingShingle Cornelius Krull
Marina Castelli
Prokop Hapala
Dhaneesh Kumar
Anton Tadich
Martina Capsoni
Mark T. Edmonds
Jack Hellerstedt
Sarah A. Burke
Pavel Jelinek
Agustin Schiffrin
Iron-based trinuclear metal-organic nanostructures on a surface with local charge accumulation
Nature Communications
title Iron-based trinuclear metal-organic nanostructures on a surface with local charge accumulation
title_full Iron-based trinuclear metal-organic nanostructures on a surface with local charge accumulation
title_fullStr Iron-based trinuclear metal-organic nanostructures on a surface with local charge accumulation
title_full_unstemmed Iron-based trinuclear metal-organic nanostructures on a surface with local charge accumulation
title_short Iron-based trinuclear metal-organic nanostructures on a surface with local charge accumulation
title_sort iron based trinuclear metal organic nanostructures on a surface with local charge accumulation
url https://doi.org/10.1038/s41467-018-05543-4
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