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棒状分子泊沙康唑和伊曲康唑在玻璃中的表面扩散:界面分子排列和本体渗透的影响。

Surface diffusion in glasses of rod-like molecules posaconazole and itraconazole: effect of interfacial molecular alignment and bulk penetration.

作者信息

Li Yuhui, Zhang Wei, Bishop Camille, Huang Chengbin, Ediger M D, Yu Lian

机构信息

School of Pharmacy, University of Wisconsin-Madison, Madison, WI 53705, USA.

出版信息

Soft Matter. 2020 Jun 7;16(21):5062-5070. doi: 10.1039/d0sm00353k. Epub 2020 May 26.

DOI:10.1039/d0sm00353k
PMID:32453335
Abstract

The method of surface grating decay has been used to measure surface diffusion in the glasses of two rod-like molecules posaconazole (POS) and itraconazole (ITZ). Although structurally similar antifungal medicines, ITZ forms liquid-crystalline phases while POS does not. Surface diffusion in these systems is significantly slower than in the glasses of quasi-spherical molecules of similar volume when compared at the glass transition temperature T. Between the two systems, ITZ has slower surface diffusion. These results are explained on the basis of the near-vertical orientation of the rod-like molecules at the surface and their deep penetration into the bulk where mobility is low. For molecular glasses without extensive hydrogen bonds, we find that the surface diffusion coefficient at T decreases smoothly with the penetration depth of surface molecules and the trend has the double-exponential form for the surface mobility gradient observed in simulations. This supports the view that these molecular glasses have a similar mobility vs. depth profile and their different surface diffusion rates arise simply from the different depths at which molecules are anchored. Our results also provide support for a previously observed correlation between the rate of surface diffusion and the fragility of the bulk liquid.

摘要

表面光栅衰减法已被用于测量两种棒状分子泊沙康唑(POS)和伊曲康唑(ITZ)在玻璃态中的表面扩散。尽管这两种抗真菌药物在结构上相似,但ITZ会形成液晶相,而POS则不会。当在玻璃化转变温度T下进行比较时,这些体系中的表面扩散明显慢于体积相似的准球形分子在玻璃态中的扩散。在这两个体系中,ITZ的表面扩散较慢。这些结果是基于棒状分子在表面近乎垂直的取向以及它们深入到本体中(此处迁移率较低)来解释的。对于没有广泛氢键的分子玻璃,我们发现T时的表面扩散系数随着表面分子的渗透深度而平滑下降,并且该趋势对于模拟中观察到的表面迁移率梯度具有双指数形式。这支持了这样一种观点,即这些分子玻璃具有相似的迁移率与深度分布,并且它们不同的表面扩散速率仅仅源于分子锚定的不同深度。我们的结果还为先前观察到的表面扩散速率与本体液体的脆性之间的相关性提供了支持。

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