Polymorphism and its effects on the magnetic behaviour of the [Fe(sal2-trien)][Ni(dmit)2] spin-crossover complex

The syntheses, structural characterisation, and magnetic and spectroscopic properties of three new polymorphs of the spin-crossover complex [Fe(sal2-trien)][Ni(dmit)2] are reported. The results are discussed as a function of their intra- and intermolecular arrangement. Correlation of their crystal s...

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Main Authors: Faulmann, C., Szilagyi, Petra, Jacob, K., Chahine, J., Valade, L.
Format: Journal Article
Published: Royal Society of Chemistry 2009
Online Access:http://pubs.rsc.org/en/Content/ArticleLanding/2009/NJ/b901779h#!divAbstract
http://hdl.handle.net/20.500.11937/9447
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author Faulmann, C.
Szilagyi, Petra
Jacob, K.
Chahine, J.
Valade, L.
author_facet Faulmann, C.
Szilagyi, Petra
Jacob, K.
Chahine, J.
Valade, L.
author_sort Faulmann, C.
building Curtin Institutional Repository
collection Online Access
description The syntheses, structural characterisation, and magnetic and spectroscopic properties of three new polymorphs of the spin-crossover complex [Fe(sal2-trien)][Ni(dmit)2] are reported. The results are discussed as a function of their intra- and intermolecular arrangement. Correlation of their crystal structures and magnetic properties suggest that some torsion angles play a significant role in the magnetic properties of this class of compounds. Intermolecular contacts are also of importance, and the nature of the short contacts between molecular species seems to be more crucial than their number in the allowance of spin-crossover.
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institution Curtin University Malaysia
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last_indexed 2025-11-14T06:25:32Z
publishDate 2009
publisher Royal Society of Chemistry
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spelling curtin-20.500.11937-94472018-12-14T00:47:47Z Polymorphism and its effects on the magnetic behaviour of the [Fe(sal2-trien)][Ni(dmit)2] spin-crossover complex Faulmann, C. Szilagyi, Petra Jacob, K. Chahine, J. Valade, L. The syntheses, structural characterisation, and magnetic and spectroscopic properties of three new polymorphs of the spin-crossover complex [Fe(sal2-trien)][Ni(dmit)2] are reported. The results are discussed as a function of their intra- and intermolecular arrangement. Correlation of their crystal structures and magnetic properties suggest that some torsion angles play a significant role in the magnetic properties of this class of compounds. Intermolecular contacts are also of importance, and the nature of the short contacts between molecular species seems to be more crucial than their number in the allowance of spin-crossover. 2009 Journal Article http://hdl.handle.net/20.500.11937/9447 http://pubs.rsc.org/en/Content/ArticleLanding/2009/NJ/b901779h#!divAbstract Royal Society of Chemistry restricted
spellingShingle Faulmann, C.
Szilagyi, Petra
Jacob, K.
Chahine, J.
Valade, L.
Polymorphism and its effects on the magnetic behaviour of the [Fe(sal2-trien)][Ni(dmit)2] spin-crossover complex
title Polymorphism and its effects on the magnetic behaviour of the [Fe(sal2-trien)][Ni(dmit)2] spin-crossover complex
title_full Polymorphism and its effects on the magnetic behaviour of the [Fe(sal2-trien)][Ni(dmit)2] spin-crossover complex
title_fullStr Polymorphism and its effects on the magnetic behaviour of the [Fe(sal2-trien)][Ni(dmit)2] spin-crossover complex
title_full_unstemmed Polymorphism and its effects on the magnetic behaviour of the [Fe(sal2-trien)][Ni(dmit)2] spin-crossover complex
title_short Polymorphism and its effects on the magnetic behaviour of the [Fe(sal2-trien)][Ni(dmit)2] spin-crossover complex
title_sort polymorphism and its effects on the magnetic behaviour of the [fe(sal2-trien)][ni(dmit)2] spin-crossover complex
url http://pubs.rsc.org/en/Content/ArticleLanding/2009/NJ/b901779h#!divAbstract
http://hdl.handle.net/20.500.11937/9447