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Dynamic covalent synthesis of aryleneethynylene cages through alkyne metathesis: dimer, tetramer, or interlocked complex?

机译:通过炔烃复分解的动态共价合成芳基烯基笼:二聚体,四聚体或互锁复合物?

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A dynamic covalent approach towards rigid aryleneethynylene covalent organic polyhedrons (COPs) was explored. Our study on the relationship of the COP structures and the geometry of their building blocks reveals that the topology of aryleneethynylene COPs strongly depends on the size of the building blocks. A tetramer (D2h symmetric), dimer, or interlocked complex can be formed from monomers with the same face-to-edge angle but in different sizes. As alkyne metathesis is a self-exchange reaction and non-directional, the cyclooligomerization of multi-alkyne monomers involves both intramolecular cyclization and intermolecular metathesis reaction, resulting in complicated thermodynamic process disturbed by kinetic competition. Although a tetrahedron-shaped tetramer (Td symmetric) has comparable thermodynamic stability to a D2h symmetric tetramer, its formation is kinetically disfavored and was not observed experimentally. Aryleneethynylene COPs consist of purely unsaturated carbon backbones and exhibit large internal cavities, which would have interesting applications in host–guest chemistry and development of porous materials.
机译:探讨了抗刚性亚芳基乙烯共价有机多面体(COP)的动态共价方法。我们研究了COP结构和构建块的几何形状的研究表明,亚芳基烯基COP的拓扑强烈取决于构建块的大小。可以由具有相同面对边角的单体形成四聚体( d 2h 对称),二聚体或互锁复合物。不同的尺寸。由于炔烃是一种自交换反应和非定向,多炔单体的环烷化涉及分子内环化和分子间复分解反应,导致动力学竞争的复杂热力学过程。尽管四面体的四聚体( T <小> D 对称)对 D 2H 对称四聚体,其形成是动力学性的,并且没有通过实验观察。芳基乙烯COPS由纯粹的不饱和碳骨架组成,并且具有大型内腔,其在宿主客地化学和多孔材料的开发中具有有趣的应用。

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