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国家自然科学基金(21173152)

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相关作者:赵南蓉董运洪赖鑫昱更多>>
相关机构:四川大学更多>>
发文基金:国家自然科学基金四川省科技计划项目更多>>
相关领域:理学更多>>

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Kinetics of molecular transitions with dynamic disorder from single-molecule pulling experiments
<正>Macromolecular transitions are subject to large fluctuations of rate constant, termed as dynamic disorder. ...
郑跃李平赵南蓉
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Time-dependent Diffusion Coefficient and Conventional Diffusion Constant of Nanoparticles in Polymer Melts by Mode-coupling Theory
2013年
Time-dependent diffusion coefficient and conventional diffusion constant are calculated and analyzed to study diffusion of nanoparticles in polymer melts. A generalized Langevin equa- tion is adopted to describe the diffusion dynamics. Mode-coupling theory is employed to calculate the memory kernel of friction. For simplicity, only microscopic terms arising from binary collision and coupling to the solvent density fluctuation are included in the formalism. The equilibrium structural information functions of the polymer nanocomposites required by mode-coupling theory are calculated on the basis of polymer reference interaction site model with Percus-Yevick closure. The effect of nanoparticle size and that of the polymer size are clarified explicitly. The structural functions, the friction kernel, as well as the diffusion coefficient show a rich variety with varying nanoparticle radius and polymer chain length. We find that for small nanoparticles or short chain polymers, the characteristic short time non-Markov diffusion dynamics becomes more prominent, and the diffusion coefficient takes longer time to approach asymptotically the conventional diffusion constant. This constant due to the microscopic contributions will decrease with the increase of nanoparticle size, while increase with polymer size. Furthermore, our result of diffusion constant from mode- coupling theory is compared with the value predicted from the Stokes-Einstein relation. It shows that the microscopic contributions to the diffusion constant are dominant for small nanoparticles or long chain polymers. Inversely, when nanonparticle is big, or polymer chain is short, the hydrodynamic contribution might play a significant role.
赖鑫昱赵南蓉
聚电解质溶液中纳米粒子扩散系数的模耦合理论计算
2015年
采用模耦合理论(MCT)建立了研究纳米粒子在聚电解质溶液中长时扩散系数D的介观统计方法,提出了有效的聚合物溶液动态散射函数Γpp(k,t)的约化形式.定量计算了溶液微观密度涨落对扩散系数的贡献,考察了扩散系数D对溶液浓度c及纳米粒子半径R的依赖关系,并定量分析了MCT与经典StokesEinstein(S-E)关系的偏离.结果表明,MCT方法的研究结果与实验数据吻合.当纳米粒子尺寸小于聚电解质特征尺寸时,其扩散系数对S-E关系明显偏离.本文建立的基于微观描述的MCT方法为进一步研究纳米粒子在聚合物溶液中的含时扩散动力学行为奠定了理论基础.
董运洪陈谙谱赵南蓉
关键词:聚电解质溶液
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