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首页> 外文期刊>The Journal of Chemical Physics >Theoretical and computational modeling of self-oscillating polymer gels
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Theoretical and computational modeling of self-oscillating polymer gels

机译:自振荡聚合物凝胶的理论和计算模型

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The authors model wave propagation in swollen, chemoresponsive polymer gels that are undergoing the oscillatory Belousov-Zhabotinsky (BZ) reaction. To carry out this study, they first modify the Oregonator model for BZ reactions in simple solutions to include the effect of the polymer on the reaction kinetics. They then describe the gel dynamics through the framework of the two-fluid model. The polymer-solvent interactions that are introduced through the BZ reaction are captured through a coupling term, which is added to the Flory-Huggins model for polymer-solvent mixtures. The resulting theoretical model is then used to develop the gel lattice spring model (gLSM), which is a computationally efficient approach for simulating large-scale, two-dimensional (2D) deformations and chemical reactions within a swollen polymer network. The 2D calculations allow the authors to probe not only volume changes but also changes in the sample's shape. Using the gLSM, they determine the pattern formation and shape changes in 2D rectangular BZ gels that are anchored to a solid wall. They demonstrate that the dynamic patterns depend on whether the gel is expanded or contracted near the wall, and on the sample's dimensions. Finally, they isolate a scenario where the detachment of the gel from the wall leads to macroscopic motion of the entire sample.
机译:作者对正在发生振荡的Belousov-Zhabotinsky(BZ)反应的溶胀的,对化学反应敏感的聚合物凝胶中的波传播进行建模。为了进行这项研究,他们首先在简单的溶液中修改了用于BZ反应的Oregonator模型,以包括聚合物对反应动力学的影响。然后,他们通过双流体模型的框架描述了凝胶动力学。通过BZ反应引入的聚合物-溶剂相互作用是通过耦合项捕获的,该耦合项被添加到聚合物-溶剂混合物的Flory-Huggins模型中。然后将所得的理论模型用于开发凝胶晶格弹簧模型(gLSM),这是一种计算有效的方法,可用于模拟溶胀的聚合物网络中的大规模,二维(2D)变形和化学反应。通过2D计算,作者不仅可以探测体积变化,还可以探测样品形状的变化。他们使用gLSM确定锚定在固体壁上的2D矩形BZ凝胶中的图案形成和形状变化。他们证明了动态模式取决于凝胶是否在壁附近膨胀或收缩以及样品的尺寸。最后,他们隔离了一种情况,即凝胶从壁上脱落导致整个样品发生宏观运动。

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