Innentitelbild: Hysteretic Three‐Step Spin Crossover in a Thermo‐ and Photochromic 3D Pillared Hofmann‐type Metal–Organic Framework (Angew. Chem. 40/2012)
Identifieur interne : 005745 ( Main/Exploration ); précédent : 005744; suivant : 005746Innentitelbild: Hysteretic Three‐Step Spin Crossover in a Thermo‐ and Photochromic 3D Pillared Hofmann‐type Metal–Organic Framework (Angew. Chem. 40/2012)
Auteurs : Natasha F. Sciortino [Australie] ; Katrin R. Scherl-Gruenwald [Australie] ; Guillaume Chastanet [France] ; Gregory J. Halder [États-Unis] ; Karena W. Chapman [États-Unis] ; Jean-François Létard [France] ; Cameron J. Kepert [Australie]Source :
- Angewandte Chemie [ 0044-8249 ] ; 2012-10-01.
Abstract
Multistabile molekulare Materialien bieten vielversprechende Perspektiven für die Erforschung von Festkörperphänomenen und Anwendungen in molekularen Funktionseinheiten. In der Zuschrift auf S. 10301 ff. stellen C. J. Kepert et al. eine Metall‐organische Gerüststruktur mit einem einzigartigen dreistufigen Spin‐Crossover vor. Der Übergang erstreckt sich über vier Spinzustände und zwei Temperaturbereiche, in denen das Material formal tristabil ist, d. h., drei der vier Zustände sind innerhalb jedes dieser Bereiche stabil und könnten thermisch individuell angesteuert werden. Graphik: Karl Mutimer.
Url:
DOI: 10.1002/ange.201207301
Affiliations:
- Australie, France, États-Unis
- Aquitaine, Nouvelle-Aquitaine, Nouvelle-Galles du Sud
- Bordeaux, Sydney
- Université Bordeaux I, Université de Sydney
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Le document en format XML
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<front><div type="abstract" xml:lang="de">Multistabile molekulare Materialien bieten vielversprechende Perspektiven für die Erforschung von Festkörperphänomenen und Anwendungen in molekularen Funktionseinheiten. In der Zuschrift auf S. 10301 ff. stellen C. J. Kepert et al. eine Metall‐organische Gerüststruktur mit einem einzigartigen dreistufigen Spin‐Crossover vor. Der Übergang erstreckt sich über vier Spinzustände und zwei Temperaturbereiche, in denen das Material formal tristabil ist, d. h., drei der vier Zustände sind innerhalb jedes dieser Bereiche stabil und könnten thermisch individuell angesteuert werden. Graphik: Karl Mutimer.</div>
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