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Highly Oxidized States of Phthalocyaninato Terbium(III) Multiple‐Decker Complexes Showing Structural Deformations, Biradical Properties and Decreases in Magnetic Anisotropy

Presented here is a comprehensive study of highly oxidized multiple‐decker complexes composed of Tb(III) and Cd(II) ions and two to five phthalocyaninato ligands, which are stabilized by electron‐donating n‐butoxy groups. From X‐ray structural analyses, all the complexes become axially compressed up...

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Autores principales: Horii, Yoji, Damjanović, Marko, Ajayakumar, M. R., Katoh, Keiichi, Kitagawa, Yasutaka, Chibotaru, Liviu, Ungur, Liviu, Mas‐Torrent, Marta, Wernsdorfer, Wolfgang, Breedlove, Brian K., Enders, Markus, Veciana, Jaume, Yamashita, Masahiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7384013/
https://www.ncbi.nlm.nih.gov/pubmed/32428358
http://dx.doi.org/10.1002/chem.202001365
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author Horii, Yoji
Damjanović, Marko
Ajayakumar, M. R.
Katoh, Keiichi
Kitagawa, Yasutaka
Chibotaru, Liviu
Ungur, Liviu
Mas‐Torrent, Marta
Wernsdorfer, Wolfgang
Breedlove, Brian K.
Enders, Markus
Veciana, Jaume
Yamashita, Masahiro
author_facet Horii, Yoji
Damjanović, Marko
Ajayakumar, M. R.
Katoh, Keiichi
Kitagawa, Yasutaka
Chibotaru, Liviu
Ungur, Liviu
Mas‐Torrent, Marta
Wernsdorfer, Wolfgang
Breedlove, Brian K.
Enders, Markus
Veciana, Jaume
Yamashita, Masahiro
author_sort Horii, Yoji
collection PubMed
description Presented here is a comprehensive study of highly oxidized multiple‐decker complexes composed of Tb(III) and Cd(II) ions and two to five phthalocyaninato ligands, which are stabilized by electron‐donating n‐butoxy groups. From X‐ray structural analyses, all the complexes become axially compressed upon ligand oxidation, resulting in bowl‐shaped distortions of the ligands. In addition, unusual coexistence of square antiprism and square prism geometries around metal ions was observed in +4e charged species. From paramagnetic (1)H NMR studies on the resulting series of triple, quadruple and quintuple‐decker complexes, ligand oxidation leads to a decrease in the magnetic anisotropy, as predicted from theoretical calculations. Unusual paramagnetic shifts were observed in the spectra of the +2e charged quadruple and quintuple‐decker complexes, indicating that those two species are actually unexpected triplet biradicals. Magnetic measurements revealed that the series of complexes show single‐molecule magnet properties, which are controlled by the multi‐step redox induced structural changes.
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spelling pubmed-73840132020-07-28 Highly Oxidized States of Phthalocyaninato Terbium(III) Multiple‐Decker Complexes Showing Structural Deformations, Biradical Properties and Decreases in Magnetic Anisotropy Horii, Yoji Damjanović, Marko Ajayakumar, M. R. Katoh, Keiichi Kitagawa, Yasutaka Chibotaru, Liviu Ungur, Liviu Mas‐Torrent, Marta Wernsdorfer, Wolfgang Breedlove, Brian K. Enders, Markus Veciana, Jaume Yamashita, Masahiro Chemistry Full Papers Presented here is a comprehensive study of highly oxidized multiple‐decker complexes composed of Tb(III) and Cd(II) ions and two to five phthalocyaninato ligands, which are stabilized by electron‐donating n‐butoxy groups. From X‐ray structural analyses, all the complexes become axially compressed upon ligand oxidation, resulting in bowl‐shaped distortions of the ligands. In addition, unusual coexistence of square antiprism and square prism geometries around metal ions was observed in +4e charged species. From paramagnetic (1)H NMR studies on the resulting series of triple, quadruple and quintuple‐decker complexes, ligand oxidation leads to a decrease in the magnetic anisotropy, as predicted from theoretical calculations. Unusual paramagnetic shifts were observed in the spectra of the +2e charged quadruple and quintuple‐decker complexes, indicating that those two species are actually unexpected triplet biradicals. Magnetic measurements revealed that the series of complexes show single‐molecule magnet properties, which are controlled by the multi‐step redox induced structural changes. John Wiley and Sons Inc. 2020-06-18 2020-07-14 /pmc/articles/PMC7384013/ /pubmed/32428358 http://dx.doi.org/10.1002/chem.202001365 Text en © 2020 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Full Papers
Horii, Yoji
Damjanović, Marko
Ajayakumar, M. R.
Katoh, Keiichi
Kitagawa, Yasutaka
Chibotaru, Liviu
Ungur, Liviu
Mas‐Torrent, Marta
Wernsdorfer, Wolfgang
Breedlove, Brian K.
Enders, Markus
Veciana, Jaume
Yamashita, Masahiro
Highly Oxidized States of Phthalocyaninato Terbium(III) Multiple‐Decker Complexes Showing Structural Deformations, Biradical Properties and Decreases in Magnetic Anisotropy
title Highly Oxidized States of Phthalocyaninato Terbium(III) Multiple‐Decker Complexes Showing Structural Deformations, Biradical Properties and Decreases in Magnetic Anisotropy
title_full Highly Oxidized States of Phthalocyaninato Terbium(III) Multiple‐Decker Complexes Showing Structural Deformations, Biradical Properties and Decreases in Magnetic Anisotropy
title_fullStr Highly Oxidized States of Phthalocyaninato Terbium(III) Multiple‐Decker Complexes Showing Structural Deformations, Biradical Properties and Decreases in Magnetic Anisotropy
title_full_unstemmed Highly Oxidized States of Phthalocyaninato Terbium(III) Multiple‐Decker Complexes Showing Structural Deformations, Biradical Properties and Decreases in Magnetic Anisotropy
title_short Highly Oxidized States of Phthalocyaninato Terbium(III) Multiple‐Decker Complexes Showing Structural Deformations, Biradical Properties and Decreases in Magnetic Anisotropy
title_sort highly oxidized states of phthalocyaninato terbium(iii) multiple‐decker complexes showing structural deformations, biradical properties and decreases in magnetic anisotropy
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7384013/
https://www.ncbi.nlm.nih.gov/pubmed/32428358
http://dx.doi.org/10.1002/chem.202001365
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