The cation-dependent structural phase transition and dielectric response in a family of cyano-bridged perovskite-like coordination polymers.
@article{Xu2016TheCS,
title={The cation-dependent structural phase transition and dielectric response in a family of cyano-bridged perovskite-like coordination polymers.},
author={Wei-Jian Xu and Shao-Li Chen and Zhi-Tao Hu and Rui‐Biao Lin and Yu-Jun Su and Wei‐Xiong Zhang and Xiao‐Ming Chen},
journal={Dalton transactions},
year={2016},
volume={45 10},
pages={
4224-9
}
}A family of cyano-bridged perovskite-like coordination polymers (CPs), [(CH3)nNH(4-n)]2[KFe(CN)6] (n = 1 (1), 2 (2), 3 (3), and 4 (4)), were synthesized and characterized. The differential scanning calorimetry measurements and variable-temperature single-crystal X-ray structural analyses revealed that, owing to the deformation of the host framework as well as the dynamic transition of the guest cation between the static/ordered and dynamic/disordered states, the four CPs undergo structural…
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References
SHOWING 1-10 OF 41 REFERENCES
Switchable guest molecular dynamics in a perovskite-like coordination polymer toward sensitive thermoresponsive dielectric materials.
- Materials ScienceAngewandte Chemie
- 2015
A new perovskite-like coordination polymer which undergoes a reversible ferroelastic phase transition is reported which may serve as a model compound for the development of sensitive thermoresponsive dielectric materials and may be key to understanding and modulating molecular/ionic dynamics of guest molecules in confined space.
A chemically triggered and thermally switched dielectric constant transition in a metal cyanide based crystal.
- Materials Science, PhysicsAngewandte Chemie
- 2015
A dielectric constant transition is chemically triggered and thermally switched in (HPy)2[Na(H2O)Co(CN)6] (2, HPy=pyridinium cation) by single-crystal-to-single-crystal transformation and structural…
Switchable Dielectric Phase Transition Induced by Ordering of Twisting Motion in 1,4-Diazabicyclo[2.2.2]octane Chlorodifluoroacetate
- Chemistry, Materials Science
- 2013
A novel molecular electric ordered compound [(Hdabco)+ClF2CCOO–] (complex 1, dabco = 1,4-diazabicyclo[2.2.2]octane) has been discovered as a switchable dielectric material, in which the N–H···O…
Ferroelastic phase transition and switchable dielectric behavior associated with ordering of molecular motion in a perovskite-like architectured supramolecular cocrystal
- Materials Science
- 2013
An organic supramolecular co-crystal with a perovskite-like architecture, dabco·p-nitrophenol (1, dabco = 1,4-diazabicyclo[2.2.2]octane), which undergoes a reversible ferroelastic phase transition…
Order-disorder antiferroelectric phase transition in a hybrid inorganic-organic framework with the perovskite architecture.
- Materials ScienceJournal of the American Chemical Society
- 2008
Evidence is presented that this is a classical paraelectric to antiferroelectric phase transition that is driven by ordering of the hydrogen atoms, which is unprecedented in hybrid frameworks and opens up an exciting new direction in rational synthetic strategies to create extended hybrid networks for applications in ferroic-related fields.
Structural Transition in the Perovskite-like Bimetallic Azido Coordination Polymers: (NMe4)2[B′·B″(N3)6] (B′ = Cr3+, Fe3+; B″ = Na+, K+)
- Materials Science
- 2014
Through in situ variable-temperature single-crystal X-ray diffraction analysis, a solid–solid structural phase transition induced by the successive displacements of the [NMe4]+ guest and a subsequent…
Mechanism of the order–disorder phase transition, and glassy behavior in the metal-organic framework [(CH3)2NH2]Zn(HCOO)3
- Materials ScienceProceedings of the National Academy of Sciences
- 2011
Transitions associated with orientational order–disorder phenomena are found in a wide range of materials and may have a significant impact on their properties. In this work, specific heat and 1H NMR…
Synthesis and order-disorder transition in a novel metal formate framework of [(CH₃)₂NH₂]Na(0.5)Fe(0.5)(HCOO)₃].
- Materials ScienceDalton transactions
- 2014
The synthesis, crystal structure, thermal, dielectric, Raman, infrared, and magnetic properties of DMNaFe, the first metal formate framework templated by organic cations, are reported, presenting an ABO3 perovskite architecture with NaO6 octahedra as building blocks of the framework.
Structure, phonon properties, and order-disorder transition in the metal formate framework of [NH4][Mg(HCOO)3].
- ChemistryInorganic chemistry
- 2014
Analysis of the Raman data show that the rotational and translational motions of NH4(+) do not freeze completely at the phase transition but exhibit further slowing down below 255 K, and the motional freezing becomes nearly complete below 140 K.
Above-room-temperature ferroelastic phase transition in a perovskite-like compound [N(CH3)4][Cd(N3)3].
- Materials ScienceChemical communications
- 2014
A new perovskite-like compound [N(CH3)4][Cd(N3)3] is reported here, which undergoes a series of reversible phase transitions including an above-room-temperature ferroelastic phase transition. An…


