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首页> 外文期刊>Russian Journal of Inorganic Chemistry >Effect of the Hydrostatic Pressure on the Thermodynamics of Structural Phase Transition in Quasi-One-Dimensional Ferroelectrics Pb(H/D)PO4: Quantum Chemical Analysis
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Effect of the Hydrostatic Pressure on the Thermodynamics of Structural Phase Transition in Quasi-One-Dimensional Ferroelectrics Pb(H/D)PO4: Quantum Chemical Analysis

机译:静压压力对准一维铁电气PB(H / d)PO4中结构相变热力学的影响:量子化学分析

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摘要

The change in the structural phase transition thermodynamics of lead hydrogen phosphate (LHP) and lead deuterium phosphate (LDP) depending on the external hydrostatic pressure was studied using the Ising pseudo-spin model taking account of tunneling and long-range effects. The same simplified version of the quantum chemical approach that we proposed for studying these systems at atmospheric pressure was used. The critical transition temperatures T (c) were estimated for both systems and the considerable decrease in T (c) observed experimentally was explained in each case. The calculations gave an estimate for the width of the barrier in LHP (ae0.35 ); no experimental neutron diffraction value for this barrier is available from the literature.
机译:研究了铅磷酸盐(LHP)和铅氘磷酸氘(LDP)的结构相变热力学的变化,取决于外部静水压力,考虑到隧道和远程效果。 使用我们提出在大气压下研究这些系统的量子化学方法的相同简化版本。 估计临界过渡温度T(c)对于系统,并且在每种情况下解释了实验所观察到的T(c)的相当大的降低。 计算给出了LHP中屏障宽度的估计(AE0.35); 该屏障没有实验中子衍射值可从文献中获得。

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