Cargando…

Spin-communication channels between Ln(III) bis-phthalocyanines molecular nanomagnets and a magnetic substrate

Learning the art of exploiting the interplay between different units at the atomic scale is a fundamental step in the realization of functional nano-architectures and interfaces. In this context, understanding and controlling the magnetic coupling between molecular centers and their environment is s...

Descripción completa

Detalles Bibliográficos
Autores principales: Candini, A., Klar, D., Marocchi, S., Corradini, V., Biagi, R., De Renzi, V., del Pennino, U., Troiani, F., Bellini, V., Klyatskaya, S., Ruben, M., Kummer, K., Brookes, N. B., Huang, H., Soncini, A., Wende, H., Affronte, M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4764849/
https://www.ncbi.nlm.nih.gov/pubmed/26907811
http://dx.doi.org/10.1038/srep21740
_version_ 1782417451219156992
author Candini, A.
Klar, D.
Marocchi, S.
Corradini, V.
Biagi, R.
De Renzi, V.
del Pennino, U.
Troiani, F.
Bellini, V.
Klyatskaya, S.
Ruben, M.
Kummer, K.
Brookes, N. B.
Huang, H.
Soncini, A.
Wende, H.
Affronte, M.
author_facet Candini, A.
Klar, D.
Marocchi, S.
Corradini, V.
Biagi, R.
De Renzi, V.
del Pennino, U.
Troiani, F.
Bellini, V.
Klyatskaya, S.
Ruben, M.
Kummer, K.
Brookes, N. B.
Huang, H.
Soncini, A.
Wende, H.
Affronte, M.
author_sort Candini, A.
collection PubMed
description Learning the art of exploiting the interplay between different units at the atomic scale is a fundamental step in the realization of functional nano-architectures and interfaces. In this context, understanding and controlling the magnetic coupling between molecular centers and their environment is still a challenging task. Here we present a combined experimental-theoretical work on the prototypical case of the bis(phthalocyaninato)-lanthanide(III) (LnPc(2)) molecular nanomagnets magnetically coupled to a Ni substrate. By means of X-ray magnetic circular dichroism we show how the coupling strength can be tuned by changing the Ln ion. The microscopic parameters of the system are determined by ab-initio calculations and then used in a spin Hamiltonian approach to interpret the experimental data. By this combined approach we identify the features of the spin communication channel: the spin path is first realized by the mediation of the external (5d) electrons of the Ln ion, keeping the characteristic features of the inner 4 f orbitals unaffected, then through the organic ligand, acting as a bridge to the external world.
format Online
Article
Text
id pubmed-4764849
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-47648492016-03-02 Spin-communication channels between Ln(III) bis-phthalocyanines molecular nanomagnets and a magnetic substrate Candini, A. Klar, D. Marocchi, S. Corradini, V. Biagi, R. De Renzi, V. del Pennino, U. Troiani, F. Bellini, V. Klyatskaya, S. Ruben, M. Kummer, K. Brookes, N. B. Huang, H. Soncini, A. Wende, H. Affronte, M. Sci Rep Article Learning the art of exploiting the interplay between different units at the atomic scale is a fundamental step in the realization of functional nano-architectures and interfaces. In this context, understanding and controlling the magnetic coupling between molecular centers and their environment is still a challenging task. Here we present a combined experimental-theoretical work on the prototypical case of the bis(phthalocyaninato)-lanthanide(III) (LnPc(2)) molecular nanomagnets magnetically coupled to a Ni substrate. By means of X-ray magnetic circular dichroism we show how the coupling strength can be tuned by changing the Ln ion. The microscopic parameters of the system are determined by ab-initio calculations and then used in a spin Hamiltonian approach to interpret the experimental data. By this combined approach we identify the features of the spin communication channel: the spin path is first realized by the mediation of the external (5d) electrons of the Ln ion, keeping the characteristic features of the inner 4 f orbitals unaffected, then through the organic ligand, acting as a bridge to the external world. Nature Publishing Group 2016-02-24 /pmc/articles/PMC4764849/ /pubmed/26907811 http://dx.doi.org/10.1038/srep21740 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Candini, A.
Klar, D.
Marocchi, S.
Corradini, V.
Biagi, R.
De Renzi, V.
del Pennino, U.
Troiani, F.
Bellini, V.
Klyatskaya, S.
Ruben, M.
Kummer, K.
Brookes, N. B.
Huang, H.
Soncini, A.
Wende, H.
Affronte, M.
Spin-communication channels between Ln(III) bis-phthalocyanines molecular nanomagnets and a magnetic substrate
title Spin-communication channels between Ln(III) bis-phthalocyanines molecular nanomagnets and a magnetic substrate
title_full Spin-communication channels between Ln(III) bis-phthalocyanines molecular nanomagnets and a magnetic substrate
title_fullStr Spin-communication channels between Ln(III) bis-phthalocyanines molecular nanomagnets and a magnetic substrate
title_full_unstemmed Spin-communication channels between Ln(III) bis-phthalocyanines molecular nanomagnets and a magnetic substrate
title_short Spin-communication channels between Ln(III) bis-phthalocyanines molecular nanomagnets and a magnetic substrate
title_sort spin-communication channels between ln(iii) bis-phthalocyanines molecular nanomagnets and a magnetic substrate
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4764849/
https://www.ncbi.nlm.nih.gov/pubmed/26907811
http://dx.doi.org/10.1038/srep21740
work_keys_str_mv AT candinia spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT klard spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT marocchis spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT corradiniv spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT biagir spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT derenziv spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT delpenninou spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT troianif spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT belliniv spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT klyatskayas spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT rubenm spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT kummerk spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT brookesnb spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT huangh spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT soncinia spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT wendeh spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate
AT affrontem spincommunicationchannelsbetweenlniiibisphthalocyaninesmolecularnanomagnetsandamagneticsubstrate