树突聚合物多尺度建模与仿真方法及其应用

Tahir Cagin, Guofeng Wang, Ryan Martin, Georgios Zamanakos, Nagarajan Vaidehi, Daniel T Mainz, William A Goddard III
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引用次数: 37

摘要

树状大分子和超支化聚合物代表了一类新型的结构控制大分子,来源于分支上的分支结构基序。树状大分子制备的合成过程允许几乎完全控制关键的分子设计参数,如大小、形状、表面/内部化学、柔韧性和拓扑结构。树状大分子是一种定义明确的、高度分支的大分子,从中心核心辐射出来,通过一步一步的、重复的反应序列合成,保证每一代都有完整的外壳,从而产生单分散的聚合物。树状大分子的这一特性使得它特别自然地使相互作用变得粗糙,以便模拟在更长的时间尺度上发生的动态过程。本文通过连续溶剂化理论、泊松-玻尔兹曼(PB)方法和表面广义玻生(SGB)方法,描述了构建树状大分子三维分子结构的方法(连续构型Boltzmann有偏直接蒙特卡罗法,CCBB MC)和粗粒树状大分子相互作用的方法(NEIMO和分层NEIMO方法)以及溶剂树状大分子相互作用的表征方法。我们将描述PAMAM,刺激响应杂化星形树状聚合物,以及结晶成A15胶体结构或Pm6m液晶的超分子组件的应用。
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Multiscale modeling and simulation methods with applications to dendritic polymers

Dendrimers and hyperbranched polymers represent a novel class of structurally controlled macromolecules derived from a branches-upon-branches structural motif. The synthetic procedures developed for dendrimer preparation permit nearly complete control over the critical molecular design parameters, such as size, shape, surface/interior chemistry, flexibility, and topology. Dendrimers are well defined, highly branched macromolecules that radiate from a central core and are synthesized through a stepwise, repetitive reaction sequence that guarantees complete shells for each generation, leading to polymers that are mono-disperse. This property of dendrimers makes it particularly natural to coarsen interactions in order to simulate dynamic processes occurring at larger length and longer time scales. In this paper, we describe methods to construct 3-dimensional molecular structures of dendrimers (Continuous Configuration Boltzmann Biased direct Monte Carlo, CCBB MC) and methods towards coarse graining dendrimer interactions (NEIMO and hierarchical NEIMO methods) and representation of solvent dendrimer interactions through continuum solvation theories, Poisson–Boltzmann (PB) and Surface Generalized Born (SGB) methods. We will describe applications to PAMAM, stimuli response hybrid star-dendrimer polymers, and supra molecular assemblies crystallizing to A15 colloidal structure or Pm6m liquid crystals.

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