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含极性卤铬酸根阴离子的塑性晶体:基于塑性转变和偶极旋转的热敏电介质

Plastic Crystals with Polar Halochromate Anion: Thermosensitive Dielectrics Based upon Plastic Transition and Dipole Rotation.

作者信息

Sun Yu-Zhi, Huang Bo, Xu Wei-Jian, Zhou Dong-Dong, Chen Shao-Li, Zhang Shi-Yong, Du Zi-Yi, Xie Yong-Rong, He Chun-Ting, Zhang Wei-Xiong, Chen Xiao-Ming

机构信息

Key Laboratory of Jiangxi University for Functional Materials Chemistry, College of Chemistry and Chemical Engineering, Gannan Normal University , Ganzhou 341000, China.

MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, School of Chemistry and Chemical Engineering, Sun Yat-Sen University , Guangzhou 510275, China.

出版信息

Inorg Chem. 2016 Nov 7;55(21):11418-11425. doi: 10.1021/acs.inorgchem.6b01911. Epub 2016 Oct 21.

Abstract

Plastic crystals functioning with rotatable components offer new opportunities in areas such as modern optoelectronic materials. Here, by taking advantage of controllable rotation of the polar component within the ion-pair plastic-crystal system, we present two such crystals, namely, (EtN)(CrOX) (X = Cl or Br), which are unusual examples exhibiting two-staged thermosensitive dielectric responses above room temperature. The frequency-dependent response in the first stage is due to the structural phase transitions, whereas that in the second stage is induced by dynamic rotation of the polar halochromate anions in their NaCl-type plastic-crystal phases. The intrinsic mechanisms were also explicated by molecular dynamics simulations, providing a direct insight into the dynamic characteristics of these two compounds. These studies show that ionic plastic crystals functioning with polar groups are an attractive candidate as sensitive thermoresponsive dielectric materials.

摘要

具有可旋转组件的塑性晶体在现代光电子材料等领域提供了新的机遇。在此,通过利用离子对塑性晶体系统中极性组件的可控旋转,我们展示了两种这样的晶体,即(EtN)(CrOX)(X = Cl或Br),它们是在室温以上表现出两阶段热敏介电响应的不寻常例子。第一阶段中频率相关的响应是由于结构相变,而第二阶段的响应是由极性卤铬酸盐阴离子在其NaCl型塑性晶体相中的动态旋转引起的。分子动力学模拟也阐明了内在机制,为深入了解这两种化合物的动态特性提供了直接视角。这些研究表明,具有极性基团的离子塑性晶体作为灵敏的热响应介电材料是一个有吸引力的候选者。

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