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首页> 外文期刊>Crystal growth & design >Low-Temperature Phase Transition of Dodecanoic Acid Crystals: A Study Using Raman, Powder X-ray Diffraction, and Density Functional Theory Calculations
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Low-Temperature Phase Transition of Dodecanoic Acid Crystals: A Study Using Raman, Powder X-ray Diffraction, and Density Functional Theory Calculations

机译:十二烷酸晶体的低温相转变:使用拉曼,粉末X射线衍射和密度函数理论计算的研究

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摘要

Dodecanoid acid, also known as lauric acid, is a molecular alloy phase change material, and as such, knowledge about its behavior under different temperatures is of utmost importance in order to design alloys capable of proper thermal protection. In this manuscript, we identified a phase transition of dodecanoic acid under cooling by Raman spectroscopy coupled with density functional theory calculations and pairs in molecular materials corrections. A complete assignment of the Raman- and infrared-active normal modes of dodecanoic acid crystal in the C form at ambient and low-temperature conditions is also reported in this manuscript. In addition, powder X-ray diffraction of the crystal under low-temperature conditions was carried out in the temperature range of 300-83 K. During cooling, several changes in the crystalline planes and the inter- and intramolecular vibrational bands were interpreted as a reversible structural phase transition. The molecules within the monoclinic structure undergo a polymorphic change from the C form to one of the A phases-presumed herein to be the A(2) form.
机译:十二烷酸,也称为月桂酸,是一种分子合金相变材料,因此,关于其在不同温度下的行为的知识至关重要,以设计能够适当的热保护的合金。在该稿件中,我们通过拉曼光谱与密度泛函理论计算和分子材料校正的对均去冷却后的十二烷酸的相转变。在本手稿中还报道了在环境温度和低温条件下C形态的十二烷酸晶体的拉曼和红外活性正常模式的完全分配。另外,在低温条件下晶体的粉末X射线衍射在300-83k的温度范围内进行。在冷却过程中,晶体平面的几种变化和分子间和分子内振动带的变化被解释为a可逆结构相变。单斜晶体结构中的分子经历从C形式的多态变化至本文推测的一相的一部分为A(2)形式。

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