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用晶格蒙特卡罗模拟设计二维共价网络:前驱体自组装

Designing 2D covalent networks with lattice Monte Carlo simulations: precursor self-assembly.

作者信息

Lisiecki Jakub, Szabelski Paweł

机构信息

Department of Theoretical Chemistry, Institute of Chemical Sciences, Faculty of Chemistry, Maria Curie-Skłodowska University in Lublin, Pl. M.C. Skłodowskiej 3, 20-031 Lublin, Poland.

出版信息

Phys Chem Chem Phys. 2021 Mar 18;23(10):5780-5796. doi: 10.1039/d0cp06608g.

Abstract

Organic synthesis reactions in the adsorbed phase have been recently an intensively studied topic in heterogeneous catalysis and material engineering. One of such processes is the Ullmann coupling in which halogenated organic monomers are transformed into covalently bonded polymeric structures. In this work, we use the lattice Monte Carlo simulation method to study the on-surface self-assembly of organometallic precursor architectures comprising tetrasubstituted naphthalene building blocks with differently distributed halogen atoms. In the coarse grained approach adopted herein the molecules and metal atoms were modeled by discrete segments, two connected and one, respectively, placed on a triangular lattice representing a (111) metallic surface. Our simulations focused on the influence of the intramolecular distribution of the substituents on the morphology of the resulting superstructures. Special attention was paid to the molecules that create porous networks characterized by long-range order. Moreover, the structural analysis of the assemblies comprising prochiral building blocks was made by running simulations for the corresponding enantiopure and racemic adsorbed systems. The obtained results demonstrated the possibility of directing the on-surface self-assembly towards networks with controllable pore shape and size. These findings can be helpful in designing covalently bonded 2D superstructures with predefined architecture and functions.

摘要

吸附相中的有机合成反应最近在多相催化和材料工程领域成为了一个深入研究的课题。其中一个这样的过程是乌尔曼偶联反应,在该反应中卤代有机单体被转化为共价键合的聚合物结构。在这项工作中,我们使用晶格蒙特卡罗模拟方法来研究由具有不同分布卤原子的四取代萘结构单元组成的有机金属前驱体结构在表面上的自组装。在本文所采用的粗粒度方法中,分子和金属原子分别由离散片段建模,两个相连的片段和一个片段分别放置在代表(111)金属表面的三角形晶格上。我们的模拟集中于取代基的分子内分布对所得超结构形态的影响。特别关注那些形成具有长程有序特征的多孔网络的分子。此外,通过对相应的对映体纯和外消旋吸附体系进行模拟,对包含前手性结构单元的组装体进行了结构分析。所得结果表明了将表面自组装导向具有可控孔形状和尺寸的网络的可能性。这些发现有助于设计具有预定义结构和功能的共价键合二维超结构。

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