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Different Modes of Anion Response Cause Circulatory Phase Transfer of a Coordination Cage with Controlled Directionality

机译:阴离子响应的不同模式导致定向度受控的配位笼循环相转移

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摘要

Controlled directional transport of molecules is essential to complex natural systems, from cellular transport up to organismal circulatory systems. In contrast to these natural systems, synthetic systems that enable transport of molecules between several spatial locations on the macroscopic scale, when external stimuli are applied, remain to be explored. Now, the transfer of a supramolecular cage is reported with controlled directionality between three phases, based on a cage that responds reversibly in two distinct ways to different anions. Notably, circulatory phase transfer of the cage was demonstrated based on a system where the three layers of solvent are arranged within a circular track. The direction of circulation between solvent phases depended upon the order of addition of anions.
机译:从细胞运输到有机体循环系统,分子的受控方向性运输对于复杂的自然系统至关重要。与这些自然系统相反,当施加外部刺激时,能够在宏观尺度上的几个空间位置之间转移分子的合成系统仍有待探索。现在,据报道,一种超分子笼在三相之间具有可控的方向性,这是基于一种笼,该笼以两种不同的方式对不同的阴离子可逆地响应。值得注意的是,基于三层溶剂排列在圆形轨道内的系统,证明了保持架的循环相转移。溶剂相之间的循环方向取决于阴离子的添加​​顺序。

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