Back to Search Start Over

A spin transition molecular material with a wide bistability domain

Authors :
UCL - SC/CHIM - Département de chimie
Garcia, Yann
Moscovici, J.
Michalowicz, A.
Ksenofontov, V.
Levchenko, G.
Bravic, G.
Chasseau, D.
Gütlich, P.
UCL - SC/CHIM - Département de chimie
Garcia, Yann
Moscovici, J.
Michalowicz, A.
Ksenofontov, V.
Levchenko, G.
Bravic, G.
Chasseau, D.
Gütlich, P.
Source :
Chemistry - A European Journal, Vol. 8, no. 21, p. 4992-5000 (2002)
Publication Year :
2002

Abstract

[Fe(hyptrz)3](4-chloro-3-nitrophenylsulfonate)2⋅2 H2O (1; hyptrz=4-(3′-hydroxypropyl)-1,2,4-triazole) has been synthesized and its physical properties have been investigated by several physical techniques including magnetic susceptibility measurements, calorimetry, and Mössbauer, optical, and EXAFS spectroscopy. Compound 1 exhibits a spin transition below room temperature, together with a very wide thermal hysteresis of about 50 K. This represents the widest hysteresis loop ever observed for an FeII-1,2,4-triazole spin transition material. The cooperativity is discussed on the basis of temperature-dependent EXAFS studies and of the structural features of a CuII analogue. The EXAFS structural model of (1) in both spin states is compared to that obtained for a related material whose spin transition occurs above room temperature. EXAFS spectroscopy suggests that 1,2,4-triazole chain compounds retain a linear character whatever the spin state of the iron(II).

Details

Database :
OAIster
Journal :
Chemistry - A European Journal, Vol. 8, no. 21, p. 4992-5000 (2002)
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1130524287
Document Type :
Electronic Resource