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首页> 外文期刊>The Journal of Chemical Physics >Replica Ornstein-Zernike theory of adsorption in a templated porous material: Interaction site systems
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Replica Ornstein-Zernike theory of adsorption in a templated porous material: Interaction site systems

机译:模板多孔材料中吸附的复制品Ornstein-Zernike理论:相互作用位点系统

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Molecular templating offers the possibility of porous materials whose selectivity rivals the molecular recognition observed in nature.The design of templated materials requires a molecular understanding of the templating effect on the material structure and performance.We present here a theoretical description of adsorption in a model templated porous material.Our model material is a quenched,equilibrated mixture of template and matrix molecular species where the template component has been subsequently removed.We propose a set of site-site [i.e.,reference interaction site model (RISM)] replica Ornstein-Zernike equations relating the correlation functions of template,matrix,and adsorbing fluid molecules.To test this approach,we focus here on systems interacting via hard-sphere site-site potentials and employ a Percus-Yevick closure.We consider chain and cluster species composed of up to five spheres and observe a range of effects associated with template structure,including higher affinity toward,and enhanced templating by,compact cluster molecules.We assess these effects by grand canonical Monte Carlo simulation and discuss their implication to the design of templated molecular recognition materials.
机译:分子模板化为多孔材料的选择性提供了可能与自然界中观察到的分子识别能力相媲美的可能性。模板化材料的设计需要对模板化对材料结构和性能的影响进行分子理解。我们的模型材料是模板和基质分子种类的淬灭,平衡混合物,其中模板成分随后已被移除。我们提出了一组位点-位置[即参考相互作用位点模型(RISM)]副本Ornstein-Zernike关于模板,矩阵和吸附流体分子的相关函数的方程。为了测试这种方法,我们在这里集中于通过硬球位点电位相互作用的系统,并采用Percus-Yevick闭合。我们考虑由最多五个球体,并观察与模板结构相关的一系列影响,包括较高亲和力我们通过大正则蒙特卡罗模拟评估了这些效应,并讨论了它们对模板化分子识别材料设计的影响。

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