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表面受限手性纳米多孔网络的理论建模:十字形分子作为通用构建单元

Theoretical Modeling of Surface Confined Chiral Nanoporous Networks: Cruciform Molecules as Versatile Building Blocks.

作者信息

Kasperski Adam, Szabelski Paweł

机构信息

Department of Theoretical Chemistry, Maria-Curie Skłodowska University, Lublin, Poland.

出版信息

Chirality. 2015 Jul;27(7):397-404. doi: 10.1002/chir.22437. Epub 2015 Feb 26.

Abstract

Patterning of solid surfaces with functional organic molecules has been a convenient route to fabricate two-dimensional materials with programmed architecture and activities. One example is the chiral nanoporous networks that can be created via controlled self-assembly of star-shaped molecules under 2D confinement. In this contribution we use computer modeling to predict the formation of molecular networks in adsorbed overlayers comprising cruciform molecular building blocks equipped with discrete interaction centers. To that end, we employ the Monte Carlo simulation method combined with a coarse-grained representation of the adsorbed molecules which are treated as collections of interconnected segments. The interaction centers within the molecules are represented by active segments whose number and distribution are adjusted. Our particular focus is on those distributions that produce prochiral molecules able to occur in adsorbed configurations being mirror images of each other (surface enantiomers). We demonstrate that, depending on size, aspect ratio, and intramolecular distribution of active sites, the surface enantiomers can co-crystallize or segregate into extended homochiral domains with largely diversified nanosized cavities. The insights from our theoretical studies can be helpful in designing 2D chiral porous networks with potential applications in enantioselective adsorption and asymmetric heterogeneous catalysis.

摘要

用功能性有机分子对固体表面进行图案化处理,是制备具有程序化结构和活性的二维材料的便捷途径。一个例子是手性纳米多孔网络,它可以通过在二维限制条件下对星形分子进行可控自组装来创建。在本论文中,我们使用计算机建模来预测在包含配备离散相互作用中心的十字形分子构建块的吸附覆盖层中分子网络的形成。为此,我们采用蒙特卡罗模拟方法,并结合对吸附分子的粗粒度表示,将其视为相互连接的片段集合。分子内的相互作用中心由活性片段表示,其数量和分布会进行调整。我们特别关注那些能产生前手性分子的分布,这些分子能够以彼此镜像的吸附构型出现(表面对映体)。我们证明,根据活性位点的大小、纵横比和分子内分布,表面对映体可以共结晶或分离成具有大量多样化纳米尺寸空腔的扩展纯手性域。我们理论研究的见解有助于设计二维手性多孔网络,在对映选择性吸附和不对称多相催化方面具有潜在应用。

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