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Modeling the solid-liquid phase transition in saturated triglycerides

机译:模拟饱和甘油三酸酯中的固液相转变

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We investigated theoretically two competing published scenarios for the melting transition of the triglyceride trilaurin (TL): those of (1) Corkery et al. [Langmuir 23, 7241 (2007)], in which the average state of each TL molecule in the liquid phase is a discotic “Y” conformer whose three chains are dynamically twisted, with an average angle of ~120° between them, and those of (2) Cebula et al. [J. Am. Oil Chem. Soc. 69, 130 (1992)], in which the liquid-state conformation of the TL molecule in the liquid phase is a nematic h~*conformer whose three chains are in a modified “chair” conformation. We developed two competing models for the two scenarios, in which TL molecules are in a nematic compact-chair (or “h”) conformation, with extended, possibly all-trans, chains at low-temperatures, and in either a Y conformation or an h~(*) conformation in the liquid state at temperatures higher than the phase-transition temperature, T~(*)=319 K. We defined an h-Y model as a realization of the proposal of Corkery et al. [Langmuir 23, 7241 (2007)], and explored its predictions by mapping it onto an Ising model in a temperature-dependent field, performing a mean-field approximation, and calculating the transition enthalpy △H. We found that the most plausible realization of the h-Y model, as applied to the solid-liquid phase transition in TL, and likely to all saturated triglycerides, gave a value of △H in reasonable agreement with the experiment. We then defined an alternative h-h~(*) model as a realization of the proposal of Cebula et al. [J. Am. Oil Chem. Soc. 69, 130 (1992)], in which the liquid phase exhibits an average symmetry breaking similar to an h conformation, but with twisted chains, to see whether it could describe the TL phase transition. The h-h~(*) model gave a value of △H that was too small by a factor of ~ 3–4. We also predicted the temperature dependence of the 1132 cm~(-1) Raman band for both models, and performed measurements of the ratios of three TL Raman bands in the temperature range of -20℃≤T≤90℃. The experimental results were in accord with the predictions of the h-Y model and support the proposal of Corkery et al. [Langmuir 23, 7241 (2007)] that the liquid state is made up of molecules that are each, on average, in a Y conformation. Finally, we carried out computer simulations of minimal-model TLs in the liquid phase, and concluded that although the individual TL molecules are, on average, Y conformers, long-range discotic order is unlikely to exist.
机译:我们从理论上研究了甘油三酸酯甘油三月桂酸酯(TL)熔融转变的两个相互竞争的公开方案:(1)Corkery等。 [Langmuir 23,7241(2007)],其中液相中每个TL分子的平均状态是盘状的“ Y”构象异构体,其三个链动态地扭曲,它们之间的平均夹角为〜120° (2)Cebula等。 [J.上午。石油化工Soc。 69,130(1992)],其中TL分子在液相中的液相构象是向列型h *构象异构体,其三个链处于修饰的“椅子”构象中。我们针对这两种情况开发了两个竞争模型,其中TL分子呈向列型紧凑椅(或“ h”)构型,在低温下具有延伸的(可能是全反式)链,且呈Y构型或在高于相变温度T〜(*)= 319 K的温度下,液态的h〜(*)构象。我们定义了一个hY模型,作为Corkery等人的建议的一种实现。 [Langmuir 23,7241(2007)],并通过将其映射到与温度相关的场中的Ising模型中,进行平均场近似并计算跃迁焓△H来探索其预测。我们发现,最可行的h-Y模型实现方法(适用于TL中的固-液相转变,可能适用于所有饱和的甘油三酸酯)给出了与实验合理吻合的△H值。然后,我们定义了另一种h-h〜(*)模型,以实现Cebula等人的建议。 [J.上午。石油化工Soc。 69,130(1992)],其中液相表现出类似于h构象的平均对称性断裂,但具有扭曲链,以观察其是否可以描述TL相转变。 h-h〜(*)模型给出的△H值太小了3-4倍。我们还预测了两个模型的1132 cm〜(-1)拉曼带的温度依赖性,并在-20℃≤T≤90℃的温度范围内对三个TL拉曼带的比率进行了测量。实验结果符合h-Y模型的预测,并支持Corkery等人的建议。 [Langmuir 23,7241(2007)]液态由平均平均呈Y构型的分子组成。最后,我们在液相中对最小模型TL进行了计算机模拟,并得出结论,尽管单个TL分子平均而言是Y构象异构体,但远程碟形排列的可能性不大。

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