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Mathematical Simulation of Lysine Dendrimers: Temperature Dependences

机译:赖氨酸树状大分子的数学模拟:温度依赖性

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The mathematical simulation of second-and fourth-generation lysine dendrimers is performed via the molecular-dynamics method. Temperature dependences of primary structural characteristics are obtained. It is shown that the sizes and atomic distributions of these dendrimers are weakly temperature-dependent. Together with the structural properties, the local mobility of CH2 groups in the dendrimers is investigated via the molecular-dynamics method and NMR spectroscopy. It is shown that the oiientational mobility of internal groups of the lysine dendrimers is lower than that of terminal groups, in agreement with the data available for flexible-chain dendrimers. Changes in correlation times with temperature are well described by the Arrhenius dependence. At the same time, the orientational mobility of internal groups in the lysine dendrimers depends on the generation number. This behavior is different from that of flexible-chain dendrimers, in which the mobility of internal groups is the same for dendrimers of different generations.
机译:第二代和第四代赖氨酸树状大分子的数学模拟是通过分子动力学方法进行的。获得了主要结构特征的温度依赖性。结果表明,这些树枝状分子的大小和原子分布与温度的关系很弱。连同结构性质,通过分子动力学方法和NMR光谱研究了树枝状聚合物中CH 2基团的局部迁移。结果表明,赖氨酸树枝状大分子内部基团的定向运动性低于末端基团,与可用于柔性链状树枝状大分子的数据一致。阿雷尼乌斯依赖性很好地描述了相关时间随温度的变化。同时,赖氨酸树状聚合物中内部基团的定向迁移率取决于世代数。此行为与柔性链树状聚合物的行为不同,在柔性链树状聚合物中,不同代的树状聚合物内部基团的迁移率相同。

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