首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Simple Guanidinium Salts Revisited: Room-Temperature Ferroelectricity in Hydrogen-Bonded Supramolecular Structures
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Simple Guanidinium Salts Revisited: Room-Temperature Ferroelectricity in Hydrogen-Bonded Supramolecular Structures

机译:再谈简单的胍盐:氢键超分子结构中的室温铁电

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摘要

Dielectric, calorimetric, and X-ray diffraction methods have been employed to characterize the crystals of guanidinium tetrafluoroborate and guanidinium perchlorate, both built of two-dimensional honeycomb hydrogen-bonded sheets. The room-temperature ferroelectricity of these isosymmetric complexes (space group R3m) has been evidenced by the polarization switching in an external electric field and pyroelectric effect. The analysis of structural data as a function of temperature showed that the high values of spontaneous polarization of about 8.5 μC cm~(-2) originate mainly from the ionic displacements, while the exceptional thermally induced increase of polarization is related with the apparent weakening of the N-H···F/N-H···O hydrogen bonds at elevated temperatures. An excellent correlation between the donor-acceptor distance and the relative displacement of the ions in the crystal lattice along the polar direction has been found. The huge entropy change at the two-closely spaced high-temperature phase transitions in guanidinium perchlorate, together with the large crystal polarization, suggest a large electrocaloric effect, the property strongly desired for solid-state cooling applications.
机译:已经采用介电,量热和X射线衍射方法来表征四氟硼酸胍和高氯酸胍的晶体,二者均由二维蜂窝状氢键合片材制成。这些等对称配合物(空间群R3m)的室温铁电已通过外部电场中的极化转换和热电效应得到了证明。结构数据随温度的变化分析表明,约8.5μCcm〜(-2)的自发极化的高值主要源于离子位移,而热引起的极化的异常增加与极化的明显减弱有关。高温下NH··F / NH···O氢键已经发现施主-受主距离与离子在晶格中沿极性方向的相对位移之间具有极好的相关性。高氯酸胍中两相间隔的高温相变处的巨大熵变化以及大的晶体极化现象表明,其电热效应很大,这是固态冷却应用强烈希望的特性。

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