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A Cobalt Supramolecular Triple-Stranded Helicate-based Discrete Molecular Cage

机译:基于钴超分子三股直立的离散分子笼

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We report a strategy to achieve a discrete cage molecule featuring a high level of structural hierarchy through a multiple-assembly process. A cobalt (Co) supramolecular triple-stranded helicate (Co-TSH)-based discrete molecular cage (1) is successfully synthesized and fully characterized. The solid-state structure of 1 shows that it is composed of six triple-stranded helicates interconnected by four linking cobalt species. This is an unusual example of a highly symmetric cage architecture resulting from the coordination-driven assembly of metallosupramolecular modules. The molecular cage 1 shows much higher CO2 uptake properties and selectivity compared with the separate supramolecular modules (Co-TSH, complex 2) and other molecular platforms.
机译:我们报告了通过多装配过程实现具有高水平结构层次结构的离散笼子分子的策略。基于钴(CO)超分子三股螺旋(CO-TSH)的离散分子笼(1)被成功合成并完全表征。固态结构的1表示,它由六个三链螺旋由四个连接的钴物质互连。这是由Metallosupramular模块的协调驱动的组装产生的高度对称笼式架构的一个不寻常示例。与单独的超分子模块(CO-TSH,复合物2)和其他分子平台相比,分子笼1显示了更高的CO 2摄取性能和选择性。

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