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首页> 外文期刊>ACS nano >Concentration-Directed Polymorphic Surface Covalent Organic Frameworks: Rhombus, Parallelogram, and Kagome
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Concentration-Directed Polymorphic Surface Covalent Organic Frameworks: Rhombus, Parallelogram, and Kagome

机译:浓缩的多态性表面共价有机框架:菱形,平行四边形和kagome

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摘要

Polymorphic single-layered covalent organic frameworks (sCOFs) via on-surface synthesis have been investigated by employing the tetradentate monomer 1,3,6,8-tetrakis(p-formylphenyl)pyrene with D-2h symmetry and ditopic linear diamine building blocks. Three kinds of well-ordered sCOFs, including rhombus, parallelogram, and Kagome networks, are observed on the graphite surface by scanning tunnel microscopy. The pore size and periodicity of sCOFs are tunable by employing diamine monomers with different lengths. Statistical analysis reveals that two types of quadrate networks are preferred at high concentration, whereas the occupancy of Kagome networks increases at low concentration. This trend can be understood by the differences in the network density of three kinds of networks. The reversibility and the self-sorting ability of the dynamic covalent reaction make it possible to control the polymorphic distribution similar to the principle demonstrated in supramolecular self-assembly.
机译:通过使用具有D-2H对称性和DITopic线性二胺结构块的四烯醇单体1,3,6,8-四(甲基苯基苯基)芘来研究通过面向表面合成的多态性单层共价有机框架(SCOFS)。 通过扫描隧道显微镜在石墨表面上观察到三种井有序的SCOF,包括菱形,平行四边形和Kagome网络。 通过使用具有不同长度的二胺单体可调谐SCOF的孔径和周期性。 统计分析表明,在高浓度下,两种类型的Quadrate网络是优选的,而Kagome网络的占用以低浓度增加。 通过三种网络的网络密度的差异可以理解这种趋势。 动态共价反应的可逆性和自排序能力使得可以控制类似于超分子自组装中所示的原理的多态性分布。

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