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Lecithin bilayers. Density measurement and molecular interactions.

机译:卵磷脂双层。密度测量和分子相互作用。

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摘要

Density measurement are reported for bilayer dispersions of a series of saturated lecithins. For chain lengths with, respectively, 14, 15, 16, 17, and 18 carbons per chain, the values for the volume changes at the main transition are 0.027, 0.031, 0.037, 0.040 and 0.045 ml/g. The main transition temperature extrapolates with increasing chain length to the melting temperature of polyethylene. Volume changes at the lower transition are an order of magnitude smaller than the main transition. Single phase thermal expansion coefficients are also reported. The combination of X-ray data and density data indicated that the volume changes are predominantly due to the hydrocarbon chains, thus enabling the volume vCH2 of the methylene groups to be computed as a function of temperature. From this and knowledge of intermolecular interactions in hydrocarbon chains, the change in the interchain van der Waals energy, delta UvdW, at the main transition is computed for the lecithins and also for the alkanes and polyethylene at the melting transition. Using the experimental enthalpies of transition and delta UvdW, the energy equation is consistently balanced for all three systems. This yields estimates of the change in the number of gauche rotamers in the lecithins at the main transition. The consistency of these calculations supports the conclusion that the most important molecular energies for the main transition in lecithin bilayers are the hydrocarbon chain interactions and the rotational isomeric energies, and the conclusion that the main phase transition is analogous to the melting transition in the alkanes from the hexagonal phase to the liquid phase, but with some modifications.
机译:报道了一系列饱和卵磷脂的双层分散体的密度测量。对于每条链分别具有14、15、16、17和18个碳原子的链长,主转变处的体积变化值为0.027、0.031、0.037、0.040和0.045 ml / g。随着链长的增加,主转变温度外推到聚乙烯的熔融温度。较低过渡处的音量变化比主要过渡小一个数量级。还报告了单相热膨胀系数。 X射线数据和密度数据的组合表明,体积变化主要归因于烃链,因此能够根据温度计算亚甲基的体积vCH2。根据这一点以及对烃链中分子间相互作用的了解,可以计算出卵磷脂以及熔融转变时的烷烃和聚乙烯在主转变时的链间范德华能量δUvdW的变化。使用跃迁和增量UvdW的实验焓,所有三个系统的能量方程始终保持平衡。这样就可以估算出主要过渡时期卵磷脂中的薄纱旋转异构体数量的变化。这些计算的一致性支持以下结论:卵磷脂双层中主要跃迁最重要的分子能量是烃链相互作用和旋转异构能,并且得出的结论是主要相变类似于烷烃中的熔融跃迁。六方相到液相,但有一些修改。

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