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首页> 外文期刊>The Journal of Chemical Physics >Exploiting classical nucleation theory for reverse self-assembly
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Exploiting classical nucleation theory for reverse self-assembly

机译:利用经典成核理论进行逆向自组装

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摘要

In this paper we introduce a new method to design interparticle interactions to target arbitrary crystal structures via the process of self-assembly. We show that it is possible to exploit the slope of the crystal nucleation free-energy barrier to sample and select optimal interparticle interactions for self-assembly into a desired structure. We apply this method to find interactions to target two simple crystal structures: a crystal with simple cubic symmetry and a two-dimensional plane with square symmetry embedded in a three-dimensional space. Finally, we discuss the potential and limits of our method and propose a general model by which a functionally infinite number of different interaction geometries may be constructed and to which our reverse self-assembly method could in principle be applied.
机译:在本文中,我们介绍了一种通过自组装过程设计靶向任意晶体结构的粒子间相互作用的新方法。我们表明,有可能利用晶体成核自由能垒的斜率进行采样,并选择最佳的粒子间相互作用,以自组装成所需的结构。我们应用此方法来找到针对两个简单晶体结构的相互作用:一个具有简单立方对称性的晶体和一个嵌入了三维空间的具有方形对称性的二维平面。最后,我们讨论了该方法的潜力和局限性,并提出了一个通用模型,通过该模型可以构造功能上无限数量的不同相互作用几何,并且原则上可以应用反向自组装方法。

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