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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Molecular dynamics simulations of polyamidoamine dendrimers and their complexes with linear poly(ethylene oxide) at different pH conditions: static properties and hydrogen bonding
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Molecular dynamics simulations of polyamidoamine dendrimers and their complexes with linear poly(ethylene oxide) at different pH conditions: static properties and hydrogen bonding

机译:聚酰胺胺树枝状聚合物及其与线性聚环氧乙烷配合物在不同pH条件下的分子动力学模拟:静态性质和氢键

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Models consisting of an amine-terminated poly(amidoamine) (PAMAM) dendrimer with and without the presence of a linear poly(ethylene oxide) (PEO) chain were studied in aqueous solutions by means of fully atomistic molecular dynamics simulations. Dendrimers of two generations, 3rd and 4th and at different pH conditions were examined, in order to address issues associated with characteristics pertinent to the shape of the dendrimers in the presence or absence of PEO as well as to the volume fraction of the penetrating solvent molecules and counterions as compared to recent experimental studies. In addition, hydrogen-bonding characteristics such as the intensity and the longevity of intra- and intermolecular hydrogen-bonded pairs are examined for the first time in these systems. It was found that the volume fraction of the penetrating solvent molecules increased upon decrease of pH, but no dependence on the size of the molecules was observed. The density of the solvent within the dendritic inferior did not exceed that of the bulk, while the corresponding number of counterions entering the dendrimer boundaries exhibited a marked increase between the 3rd and the 4th generation of the dendrimers. Intramolecular hydrogen bonding was favored at high pH conditions, while intermolecular hydrogen bonding between PAMAM and the solvent or the PEO was significantly enhanced upon protonation of the dendrimer's amines. The presence of PEO imparted appreciable changes in the dendrimer's shape particularly in the physiological pH conditions. In addition, it incurred a decrease in intramolecular hydrogen bonding and acted antagonistically to the formation of water/dendrimer hydrogen bonds. The higher degree of hydrogen bonding between PAMAM and PEO was observed at low pH levels, indicating that under these conditions the formed complexes are expected to be more stable. The findings of the present study were found to be in good agreement with the relevant experimental findings where available, thus assessing the role of several structural and conformational details in the manifested behavior and providing further insight of the effects of non-covalent complexation of PAMAM dendrimers with linear poly (ethylene oxide).
机译:通过完全原子分子动力学模拟,在水溶液中研究了包含和不存在线性聚环氧乙烷(PEO)链的胺封端的聚(酰胺基胺)(PAMAM)树枝状聚合物组成的模型。为了解决与存在或不存在PEO时与树枝状聚合物的形状以及渗透溶剂分子的体积分数有关的特征相关的问题,对第二代第三和第四代树枝状聚合物进行了研究和抗衡离子相比,最近的实验研究。此外,在这些系统中首次检查了氢键键合特性,例如分子内和分子间氢键对的强度和寿命。发现渗透溶剂分子的体积分数随pH降低而增加,但是未观察到对分子大小的依赖性。树枝状下部中溶剂的密度不超过本体的密度,而进入树枝状聚合物边界的相应数量的抗衡离子在树枝状聚合物的第三代和第四代之间显示出明显的增加。在高pH条件下,分子内氢键是有利的,而树枝状聚合物的胺质子化后,PAMAM与溶剂或PEO之间的分子间氢键显着增强。 PEO的存在使树枝状聚合物的形状发生明显变化,尤其是在生理pH条件下。另外,它引起分子内氢键的减少,并且对水/树状聚合物氢键的形成起拮抗作用。在低pH值下观察到PAMAM和PEO之间的氢键结合程度更高,表明在这些条件下,形成的配合物有望更稳定。发现本研究的结果与相关的实验结果与可用的地方的实验结果高度吻合,从而评估了一些结构和构象细节在所表现出的行为中的作用,并进一步了解了PAMAM树状聚合物的非共价复合作用与线性聚环氧乙烷。

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