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The Structure of Hydrated Poly (D L - Lactic Acid) Studied With X-Ray Diffraction and Molecular Simulation Methods

机译:研究了X射线衍射和分子模拟的方法 - 水合聚(乳酸dL)的结构

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摘要

The effect of hydration on the molecular structure of amorphous poly (D, L-lactic acid) (PDLLA) with 50:50 L-to-D ratio has been studied by combining experiments with molecular simulations. X-ray diffraction measurements revealed significant changes upon hydration in the structure functions of the copolymer. Large changes in the structure functions at ~ 10 days of incubation coincided with the large increase in the water uptake from ~1 to ~40% and the formation of voids in the film. Computer modeling based on the recently developed TIGER2/TIGER3 mixed sampling scheme was used to interpret these changes by efficiently equilibrating both dry and hydrated models of PDLLA. Realistic models of bulk amorphous PDLLA structure were generated as demonstrated by close agreement between the calculated and the experimental structure functions. These molecular simulations were used to identify the interactions between water and the polymer at the atomic level including the change of positional order between atoms in the polymer due to hydration. Changes in the partial O-O structure functions, about 95% of which were due to water-polymer interactions, were apparent in the radial distribution functions. These changes, and somewhat smaller changes in the C-C and C-O partial structure functions, clearly demonstrated the ability of the model to capture the hydrogen bonding interactions between water and the polymer, with the probability of water forming hydrogen bonds with the carbonyl oxygen of the ester group being about four times higher than with its ether oxygen.
机译:通过将实验与分子模拟的实验相结合,研究了水合对非晶多晶硅(D,L-乳酸)(PDLLA)的分子结构的影响,通过分子模拟的实验研究了50:50 L-D比。 X射线衍射测量显示在共聚物的结构功能中的水合作用显着变化。在孵育〜10天的结构功能中的大变化恰逢水吸收从〜1至〜40%的大幅增加,并在薄膜中形成空隙。基于最近开发的Tiger2 / Tiger3混合采样方案的计算机建模用于通过有效地平衡PDLLA的干燥和水合模型来解释这些变化。通过在计算的和实验结构功能之间密切一致,产生了散装非晶PDLLA结构的现实模型。这些分子模拟用于鉴定水和原子水平的聚合物之间的相互作用,包括由于水化而在聚合物中的原子之间的位置顺序变化。在径向分布函数中,部分O-O结构功能的变化约为95%是由于水 - 聚合物相互作用。这些变化,以及CC和Co部分结构功能的稍微较小的变化,清楚地证明了模型捕获水和聚合物之间的氢键相互作用的能力,具有与酯的羰基羰基羰基碳的含水结合的可能性小组比以太氧气高出四倍。

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