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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Multiscale modeling for confined fluids in open framework materials.
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APS -APS March Meeting 2017 - Event - Multiscale modeling for confined fluids in open framework materials.

机译:APS -APS 2017年3月会议-活动-开放框架材料中密闭流体的多尺度建模。

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Open framework materials are a special class of crystalline solids that can be synthesized via modular construction from a wide variety of organic linkers and organometallic or nonmetallic nodes. Whereas enormous developments have been reported in recent years for in silico design of these nanostructure materials with predictable crystallographic topology, accurate prediction of the equilibrium and transport properties of gases and liquids in the micropores of such materials remains a daunting challenge. In this presentation, I will summarize our recent efforts toward developing multiscale procedures that enable customized modeling of confined fluids in open framework materials. Our theoretical development leverages recent advances in applications of quantum and statistical mechanical methods, in particular those based on the density functional theory, to predict the electronic structure, intermolecular interactions, and macroscopic properties of the complex heterogeneous systems.
机译:开放框架材料是一类特殊的结晶固体,可以通过模块化结构由多种有机连接基以及有机金属或非金属节点合成。尽管近年来已经报道了具有可预测的晶体学拓扑结构的这些纳米结构材料的计算机设计的巨大发展,但是准确预测这种材料的微孔中气​​体和液体的平衡和传输特性仍然是艰巨的挑战。在本演讲中,我将总结我们最近在开发多尺度程序方面所做的努力,这些程序可以对开放框架材料中的受限流体进行自定义建模。我们的理论发展利用了量子力学和统计力学方法(尤其是基于密度泛函理论的方法)的最新应用来预测复杂异构系统的电子结构,分子间相互作用和宏观性质。

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