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Magnetism, Conductivity and Spin-Spin Interactions in Layered Hybrid Structure of Anionic Radicals [Ni(dmit)(2)] Alternated by Iron(III) Spin-Crossover Complex [Fe(III)(3-OMe-Sal(2)trien)] and Ferric Moiety Precursors

In this study, crystals of the hybrid layered structure, combined with Fe(III) Spin-Crossover (SCO) complexes with metal-dithiolate anionic radicals, and the precursors with nitrate and iodine counterions, are obtained and characterized. [Fe(III)(3-OMe-Sal(2)trien)][Ni(dmit)(2)] (1), [Fe(III)(3-OMe-...

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Autores principales: Shvachko, Yuri N., Spitsyna, Nataliya G., Starichenko, Denis V., Zverev, Vladimir N., Zorina, Leokadiya V., Simonov, Sergey V., Blagov, Maksim A., Yagubskii, Eduard B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7663777/
https://www.ncbi.nlm.nih.gov/pubmed/33114397
http://dx.doi.org/10.3390/molecules25214922
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author Shvachko, Yuri N.
Spitsyna, Nataliya G.
Starichenko, Denis V.
Zverev, Vladimir N.
Zorina, Leokadiya V.
Simonov, Sergey V.
Blagov, Maksim A.
Yagubskii, Eduard B.
author_facet Shvachko, Yuri N.
Spitsyna, Nataliya G.
Starichenko, Denis V.
Zverev, Vladimir N.
Zorina, Leokadiya V.
Simonov, Sergey V.
Blagov, Maksim A.
Yagubskii, Eduard B.
author_sort Shvachko, Yuri N.
collection PubMed
description In this study, crystals of the hybrid layered structure, combined with Fe(III) Spin-Crossover (SCO) complexes with metal-dithiolate anionic radicals, and the precursors with nitrate and iodine counterions, are obtained and characterized. [Fe(III)(3-OMe-Sal(2)trien)][Ni(dmit)(2)] (1), [Fe(III)(3-OMe-Sal(2)trien)]NO(3)·H(2)O (2), [Fe(III)(3-OMe-Sal(2)trien)]I (3) (3-OMe-Sal(2)trien = hexadentate N(4)O(2) Schiff base is the product of the condensation of triethylenetetramine with 3-methoxysalicylaldehyde; H(2)dmit = 2-thioxo-1,3-dithiole-4,5-dithiol). Bulk SCO transition was not achieved in the range 2.0–350 K for all three compounds. Alternatively, the hybrid system (1) exhibited irreversible segregation into the spatial fractions of Low-Spin (LS) and High-Spin (HS) phases of the ferric moiety, induced by thermal cycling. Fractioning was studied using both SQUID and EPR methods. Magnetic properties of the LS and HS phases were analyzed in the framework of cooperative interactions with anionic sublattice: Anion radical layers Ni(dmit)(2) (1), and H-bonded chains with NO(3) and I (2,3). LS phase of (1) exhibited unusual quasi-two-dimensional conductivity related to the Arrhenius mechanism in the anion radical layers, ρ(||c) = 2 × 10(5) Ohm·cm and ρ(⊥c) = 7 × 10(2) Ohm·cm at 293 K. Ground spin state of the insulating HS phase was distinctive by ferromagnetically coupled spin pairs of HS Fe(3+), S = 5/2, and metal-dithiolate radicals, S = 1/2.
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spelling pubmed-76637772020-11-14 Magnetism, Conductivity and Spin-Spin Interactions in Layered Hybrid Structure of Anionic Radicals [Ni(dmit)(2)] Alternated by Iron(III) Spin-Crossover Complex [Fe(III)(3-OMe-Sal(2)trien)] and Ferric Moiety Precursors Shvachko, Yuri N. Spitsyna, Nataliya G. Starichenko, Denis V. Zverev, Vladimir N. Zorina, Leokadiya V. Simonov, Sergey V. Blagov, Maksim A. Yagubskii, Eduard B. Molecules Article In this study, crystals of the hybrid layered structure, combined with Fe(III) Spin-Crossover (SCO) complexes with metal-dithiolate anionic radicals, and the precursors with nitrate and iodine counterions, are obtained and characterized. [Fe(III)(3-OMe-Sal(2)trien)][Ni(dmit)(2)] (1), [Fe(III)(3-OMe-Sal(2)trien)]NO(3)·H(2)O (2), [Fe(III)(3-OMe-Sal(2)trien)]I (3) (3-OMe-Sal(2)trien = hexadentate N(4)O(2) Schiff base is the product of the condensation of triethylenetetramine with 3-methoxysalicylaldehyde; H(2)dmit = 2-thioxo-1,3-dithiole-4,5-dithiol). Bulk SCO transition was not achieved in the range 2.0–350 K for all three compounds. Alternatively, the hybrid system (1) exhibited irreversible segregation into the spatial fractions of Low-Spin (LS) and High-Spin (HS) phases of the ferric moiety, induced by thermal cycling. Fractioning was studied using both SQUID and EPR methods. Magnetic properties of the LS and HS phases were analyzed in the framework of cooperative interactions with anionic sublattice: Anion radical layers Ni(dmit)(2) (1), and H-bonded chains with NO(3) and I (2,3). LS phase of (1) exhibited unusual quasi-two-dimensional conductivity related to the Arrhenius mechanism in the anion radical layers, ρ(||c) = 2 × 10(5) Ohm·cm and ρ(⊥c) = 7 × 10(2) Ohm·cm at 293 K. Ground spin state of the insulating HS phase was distinctive by ferromagnetically coupled spin pairs of HS Fe(3+), S = 5/2, and metal-dithiolate radicals, S = 1/2. MDPI 2020-10-24 /pmc/articles/PMC7663777/ /pubmed/33114397 http://dx.doi.org/10.3390/molecules25214922 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shvachko, Yuri N.
Spitsyna, Nataliya G.
Starichenko, Denis V.
Zverev, Vladimir N.
Zorina, Leokadiya V.
Simonov, Sergey V.
Blagov, Maksim A.
Yagubskii, Eduard B.
Magnetism, Conductivity and Spin-Spin Interactions in Layered Hybrid Structure of Anionic Radicals [Ni(dmit)(2)] Alternated by Iron(III) Spin-Crossover Complex [Fe(III)(3-OMe-Sal(2)trien)] and Ferric Moiety Precursors
title Magnetism, Conductivity and Spin-Spin Interactions in Layered Hybrid Structure of Anionic Radicals [Ni(dmit)(2)] Alternated by Iron(III) Spin-Crossover Complex [Fe(III)(3-OMe-Sal(2)trien)] and Ferric Moiety Precursors
title_full Magnetism, Conductivity and Spin-Spin Interactions in Layered Hybrid Structure of Anionic Radicals [Ni(dmit)(2)] Alternated by Iron(III) Spin-Crossover Complex [Fe(III)(3-OMe-Sal(2)trien)] and Ferric Moiety Precursors
title_fullStr Magnetism, Conductivity and Spin-Spin Interactions in Layered Hybrid Structure of Anionic Radicals [Ni(dmit)(2)] Alternated by Iron(III) Spin-Crossover Complex [Fe(III)(3-OMe-Sal(2)trien)] and Ferric Moiety Precursors
title_full_unstemmed Magnetism, Conductivity and Spin-Spin Interactions in Layered Hybrid Structure of Anionic Radicals [Ni(dmit)(2)] Alternated by Iron(III) Spin-Crossover Complex [Fe(III)(3-OMe-Sal(2)trien)] and Ferric Moiety Precursors
title_short Magnetism, Conductivity and Spin-Spin Interactions in Layered Hybrid Structure of Anionic Radicals [Ni(dmit)(2)] Alternated by Iron(III) Spin-Crossover Complex [Fe(III)(3-OMe-Sal(2)trien)] and Ferric Moiety Precursors
title_sort magnetism, conductivity and spin-spin interactions in layered hybrid structure of anionic radicals [ni(dmit)(2)] alternated by iron(iii) spin-crossover complex [fe(iii)(3-ome-sal(2)trien)] and ferric moiety precursors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7663777/
https://www.ncbi.nlm.nih.gov/pubmed/33114397
http://dx.doi.org/10.3390/molecules25214922
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