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Structural phase transition and dielectric relaxation in an organic–inorganic hybrid compound: [(CH3)3NH]4[Fe(SCN)6]Cl.

Authors :
Wang, Ping
Chen, Ming-Kun
Tong, Yu-Qiao
Yin, Shi-Qing
Huang, Bo
Source :
CrystEngComm. 10/28/2022, Vol. 24 Issue 40, p7083-7088. 6p.
Publication Year :
2022

Abstract

Phase transition materials that can exist in two energetically stable states are suitable for a range of applications in electronics and physics. In this work, we report a new organic–inorganic hybrid compound, [(CH3)3NH]4[Fe(SCN)6]Cl, which undergoes a structural phase transition at about 195 K accompanied with the thermal hysteresis of dielectric bistability as well as anisotropic dielectric relaxation along the crystallographic a-, b-, and c-axis in a broad temperature range, which may be considered as a potential relaxor-type dielectric material. The analyses of the dynamic structures revealed that the structural phase transition was induced by the synergetic effect of orientation of the (CH3)3NH+ cations, displacement of the Cl− anions, and slight tilling of the [Fe(SCN)6]3− complex ions. Among these, the slowly progressive reorientation of the (CH3)3NH+ cations are mainly responsible for the prominent dielectric relaxation behavior. Further studies on dielectric relaxation disclose a rather narrow distribution of the relaxation time and practically a mono-dispersive type dielectric relaxation process, which may be considered as a Debye model. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14668033
Volume :
24
Issue :
40
Database :
Academic Search Index
Journal :
CrystEngComm
Publication Type :
Academic Journal
Accession number :
159717787
Full Text :
https://doi.org/10.1039/d2ce01150f