Cargando…
The Origin of Magnetic Anisotropy and Single-Molecule Magnet Behavior in Chromium(II)-Based Extended Metal Atom Chains
[Image: see text] Chromium(II)-based extended metal atom chains have been the focus of considerable discussion regarding their symmetric versus unsymmetric structure and magnetism. We have now investigated four complexes of this class, namely, [Cr(3)(dpa)(4)X(2)] and [Cr(5)(tpda)(4)X(2)] with X = Cl...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2020
|
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7901656/ https://www.ncbi.nlm.nih.gov/pubmed/31967457 http://dx.doi.org/10.1021/acs.inorgchem.9b02994 |
_version_ | 1783654404945084416 |
---|---|
author | Cornia, Andrea Barra, Anne-Laure Bulicanu, Vladimir Clérac, Rodolphe Cortijo, Miguel Hillard, Elizabeth A. Galavotti, Rita Lunghi, Alessandro Nicolini, Alessio Rouzières, Mathieu Sorace, Lorenzo Totti, Federico |
author_facet | Cornia, Andrea Barra, Anne-Laure Bulicanu, Vladimir Clérac, Rodolphe Cortijo, Miguel Hillard, Elizabeth A. Galavotti, Rita Lunghi, Alessandro Nicolini, Alessio Rouzières, Mathieu Sorace, Lorenzo Totti, Federico |
author_sort | Cornia, Andrea |
collection | PubMed |
description | [Image: see text] Chromium(II)-based extended metal atom chains have been the focus of considerable discussion regarding their symmetric versus unsymmetric structure and magnetism. We have now investigated four complexes of this class, namely, [Cr(3)(dpa)(4)X(2)] and [Cr(5)(tpda)(4)X(2)] with X = Cl(–) and SCN(–) [Hdpa = dipyridin-2-yl-amine; H(2)tpda = N(2),N(6)-di(pyridin-2-yl)pyridine-2,6-diamine]. By dc/ac magnetic techniques and EPR spectroscopy, we found that all these complexes have easy-axis anisotropies of comparable magnitude in their S = 2 ground state (|D| = 1.5–1.8 cm(–1)) and behave as single-molecule magnets at low T. Ligand-field and DFT/CASSCF calculations were used to explain the similar magnetic properties of tri- versus pentachromium(II) strings, in spite of their different geometrical preferences and electronic structure. For both X ligands, the ground structure is unsymmetric in the pentachromium(II) species (i.e., with an alternation of long and short Cr–Cr distances) but is symmetric in their shorter congeners. Analysis of the electronic structure using quasi-restricted molecular orbitals (QROs) showed that the four unpaired electrons in Cr(5) species are largely localized in four 3d-like QROs centered on the terminal, “isolated” Cr(2+) ion. In Cr(3) complexes, they occupy four nonbonding combinations of 3d-like orbitals centered only on the two terminal metals. In both cases, then, QRO eigenvalues closely mirror the 3d-level pattern of the terminal ions, whose coordination environment remains quite similar irrespective of chain length. We conclude that the extent of unpaired-electron delocalization has little impact on the magnetic anisotropy of these wire-like molecular species. |
format | Online Article Text |
id | pubmed-7901656 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-79016562021-02-24 The Origin of Magnetic Anisotropy and Single-Molecule Magnet Behavior in Chromium(II)-Based Extended Metal Atom Chains Cornia, Andrea Barra, Anne-Laure Bulicanu, Vladimir Clérac, Rodolphe Cortijo, Miguel Hillard, Elizabeth A. Galavotti, Rita Lunghi, Alessandro Nicolini, Alessio Rouzières, Mathieu Sorace, Lorenzo Totti, Federico Inorg Chem [Image: see text] Chromium(II)-based extended metal atom chains have been the focus of considerable discussion regarding their symmetric versus unsymmetric structure and magnetism. We have now investigated four complexes of this class, namely, [Cr(3)(dpa)(4)X(2)] and [Cr(5)(tpda)(4)X(2)] with X = Cl(–) and SCN(–) [Hdpa = dipyridin-2-yl-amine; H(2)tpda = N(2),N(6)-di(pyridin-2-yl)pyridine-2,6-diamine]. By dc/ac magnetic techniques and EPR spectroscopy, we found that all these complexes have easy-axis anisotropies of comparable magnitude in their S = 2 ground state (|D| = 1.5–1.8 cm(–1)) and behave as single-molecule magnets at low T. Ligand-field and DFT/CASSCF calculations were used to explain the similar magnetic properties of tri- versus pentachromium(II) strings, in spite of their different geometrical preferences and electronic structure. For both X ligands, the ground structure is unsymmetric in the pentachromium(II) species (i.e., with an alternation of long and short Cr–Cr distances) but is symmetric in their shorter congeners. Analysis of the electronic structure using quasi-restricted molecular orbitals (QROs) showed that the four unpaired electrons in Cr(5) species are largely localized in four 3d-like QROs centered on the terminal, “isolated” Cr(2+) ion. In Cr(3) complexes, they occupy four nonbonding combinations of 3d-like orbitals centered only on the two terminal metals. In both cases, then, QRO eigenvalues closely mirror the 3d-level pattern of the terminal ions, whose coordination environment remains quite similar irrespective of chain length. We conclude that the extent of unpaired-electron delocalization has little impact on the magnetic anisotropy of these wire-like molecular species. American Chemical Society 2020-01-22 2020-02-03 /pmc/articles/PMC7901656/ /pubmed/31967457 http://dx.doi.org/10.1021/acs.inorgchem.9b02994 Text en Made available through a Creative Commons CC-BY License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) |
spellingShingle | Cornia, Andrea Barra, Anne-Laure Bulicanu, Vladimir Clérac, Rodolphe Cortijo, Miguel Hillard, Elizabeth A. Galavotti, Rita Lunghi, Alessandro Nicolini, Alessio Rouzières, Mathieu Sorace, Lorenzo Totti, Federico The Origin of Magnetic Anisotropy and Single-Molecule Magnet Behavior in Chromium(II)-Based Extended Metal Atom Chains |
title | The Origin of Magnetic Anisotropy and Single-Molecule Magnet Behavior in
Chromium(II)-Based Extended Metal Atom Chains |
title_full | The Origin of Magnetic Anisotropy and Single-Molecule Magnet Behavior in
Chromium(II)-Based Extended Metal Atom Chains |
title_fullStr | The Origin of Magnetic Anisotropy and Single-Molecule Magnet Behavior in
Chromium(II)-Based Extended Metal Atom Chains |
title_full_unstemmed | The Origin of Magnetic Anisotropy and Single-Molecule Magnet Behavior in
Chromium(II)-Based Extended Metal Atom Chains |
title_short | The Origin of Magnetic Anisotropy and Single-Molecule Magnet Behavior in
Chromium(II)-Based Extended Metal Atom Chains |
title_sort | origin of magnetic anisotropy and single-molecule magnet behavior in
chromium(ii)-based extended metal atom chains |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7901656/ https://www.ncbi.nlm.nih.gov/pubmed/31967457 http://dx.doi.org/10.1021/acs.inorgchem.9b02994 |
work_keys_str_mv | AT corniaandrea theoriginofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT barraannelaure theoriginofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT bulicanuvladimir theoriginofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT cleracrodolphe theoriginofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT cortijomiguel theoriginofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT hillardelizabetha theoriginofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT galavottirita theoriginofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT lunghialessandro theoriginofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT nicolinialessio theoriginofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT rouzieresmathieu theoriginofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT soracelorenzo theoriginofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT tottifederico theoriginofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT corniaandrea originofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT barraannelaure originofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT bulicanuvladimir originofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT cleracrodolphe originofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT cortijomiguel originofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT hillardelizabetha originofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT galavottirita originofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT lunghialessandro originofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT nicolinialessio originofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT rouzieresmathieu originofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT soracelorenzo originofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains AT tottifederico originofmagneticanisotropyandsinglemoleculemagnetbehaviorinchromiumiibasedextendedmetalatomchains |