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Fuel-Controlled Reassembly of Metal–OrganicArchitectures

机译:燃料控制的金属有机组装建筑学

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摘要

Many examples exist of biological self-assembled structures that restructure in response to external stimuli, then return to their previous state over a defined time scale, but most synthetic investigations so far have focused on systems that switch between states representing energetic minima upon stimulus application. Here we report an approach in which triphenylphosphine is used as a chemical fuel to maintain CuI-based self-assembled metallosupramolecular architectures for defined periods of time. This method was used to exert control over the threading and dethreading of the ring of a pseudorotaxane’s axle, as well as to direct the uptake and release of a guest from a metal–organic host. Management of the amount of fuel and catalyst added allowed for time-dependent regulation of product concentration.
机译:存在许多生物自组装结构的示例,这些结构会响应外部刺激而进行重组,然后在定义的时间范围内返回其先前的状态,但是到目前为止,大多数综合研究都集中在系统上,这些系统在施加刺激时会在代表能量极小值的状态之间进行切换。在这里,我们报告了一种方法,其中三苯膦用作化学燃料,可在规定的时间内维持基于Cu I 的自组装金属超分子结构。该方法用于控制假轮烷轴的环的穿线和脱线,并控制金属有机主体中客体的吸收和释放。通过管理燃料和催化剂的添加量,可以随时间调节产品浓度。

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