Phase Transition and Switchable Dielectric Properties of a Three-Dimensional Hydrogen-Bonding Framework Based on Cobalt (Ⅲ), o-Bromoaniline, and 18-Crown-6

Author:

Hu Hong-Zhi12,Yan Yi-Bo12,Wang Na1,Adila Abuduheni1,Liu Yang13,Liu Zun-Qi13

Affiliation:

1. Chemistry and Chemical Engineering College, Xinjiang Agricultural University, Ürümqi 830052, China

2. College of Mechanical and Electrical Engineering, Xinjiang Agricultural University, Ürümqi 830052, China

3. Xinjiang Sub-Center, National Engineering Research Center of Novel Equipment for Polymer Processing, Guangzhou 510641, China

Abstract

The organic–inorganic hybrid compound, (o-BrAH)[H2Co(CN)6]0.5·(18-crown-6)0.5·H2O, was synthesized and characterized by variable-temperature X-ray diffraction, single-crystal diffraction, infrared spectroscopy, elemental analysis, thermogravimetric analysis, differential scanning calorimetry, and dielectric measurements. Single-crystal X-ray diffraction revealed a three-dimensional cage-like structure formed through the hydrogen bonds of cobalt hexacyanide, supermolecular cations, and water molecules. Temperature variation triggered an abrupt change in the cage structure and simultaneously caused dynamic oscillation of the supramolecules within the framework of [Co(CN)6]3−, inducing a phase transition accompanied by a step-like change in the dielectric physical properties.

Funder

General Program of Natural Science Foundation of Xinjiang Uygur Autonomous Region

National Natural Science Foundation of China

Publisher

MDPI AG

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