Spin crossover in polymeric and heterometallic FeIIspecies containing polytopic dipyridylamino-substituted-triazine ligands
Author:
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2012/DT/C1DT10818B
Reference75 articles.
1. Spin Crossover—An Overall Perspective
2. Challenges in Engineering Spin Crossover: Structures and Magnetic Properties of Six Alcohol Solvates of Iron(II) Tris(2-picolylamine) Dichloride
3. Ordering Phenomena and Phase Transitions in a Spin-Crossover Compound—Uncovering the Nature of the Intermediate Phase of[Fe(2-pic)3]Cl2⋅EtOH
4. Interplay of Spin Conversion and Structural Phase Transformations: Re-Entrant Phase Transitions in the 2-Propanol Solvate of Tris(2-picolylamine)iron(II) Dichloride
5. Chemical disorder and spin crossover in a mixed ethanol–2-propanol solvate of FeII tris(2-picolylamine) dichloride
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1. Recent developments in supramolecular complexes of azabenzenes containing one to four N atoms: synthetic strategies, structures, and magnetic properties;RSC Advances;2022
2. Iron(II) Spin Crossover (SCO) Materials Based on Dipyridyl-N-Alkylamine;Crystals;2018-10-24
3. Spin State Crossover, Vibrational, Computational, and Structural Studies of Fe II 1‐Isopropyl‐1 H ‐tetrazole Derivatives;European Journal of Inorganic Chemistry;2017-12-05
4. Discrete Fe II Spin‐Crossover Complexes of 2,2′‐Dipyridylamino‐Substituted s ‐Triazine Ligands with Phenoxo, Cyanophenoxo and Dibenzylamino Functionalities;European Journal of Inorganic Chemistry;2015-01-20
5. Drastic Effect of Lattice Propionitrile Molecules on the Spin-Transition Temperature of a 2,2′-Dipyridylamino/s-triazine-Based Iron(II) Complex;Inorganic Chemistry;2014-08-26
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