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Shape-Controlled Synthesis and Self-Sorting of Covalent Organic Cage Compounds

机译:共价有机笼型化合物的形状控制合成和自分选

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摘要

The directional bonding approach is a powerful tool to rationally control both shape and stoichiometry of three-dimensional objects built from rigid building blocks under dynamic covalent conditions. Co-condensation of catechol-functionalized tribenzotriquinacene derivatives which have 90 degrees angles between the reactive sites and diboronic acids with bite angles of 60 degrees, 120 degrees, and 180 degrees, led to the efficient formation of, respectively, bipyramidal, tetrahedral, or cubic covalent organic cage compounds in a predictable manner. Investigations on the self-sorting of ternary mixtures containing two competitive boronic acids revealed either narcissistic or social self-sorting depending on the stability of the segregated cages relative to feasible three-component assemblies.
机译:定向键合方法是一种功能强大的工具,可以合理地控制在动态共价条件下由刚性构建基块构建的三维对象的形状和化学计量。邻苯二酚官能化的三苯并三喹并二苯衍生物在反应位点与二硼酸之间的夹角为60度,120度和180度的共缩合反应分别有效地形成了双锥体,四面体或立方以可预见的方式共价键合有机笼化合物。对包含两种竞争性硼酸的三元混合物的自分类研究表明,自恋或社会自分类取决于隔离笼相对于可行的三组分组件的稳定性。

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