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Switchable gate-opening effect in metal–organic polyhedra assemblies through solution processing

机译:通过溶液处理在金属有机多面体组件中可切换的开门效果

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Gate-opening gas sorption is known for metal–organic frameworks, and is associated with structural flexibility and advantageous properties for sensing and gas uptake. Here, we show that gate-opening is also possible for metal–organic polyhedra (MOPs), and depends on the molecular organisation in the lattice. Thanks to the solubility of MOPs, several interchangeable solvatomorphs of a lantern-type MOP were synthesised via treatment with different solvents. One phase obtained through use of methanol induced a gate-opening effect in the lattice in response to carbon dioxide uptake. The sorption process was thoroughly investigated with in situ powder X-ray diffraction and simultaneous adsorption experiments. Meanwhile, solution processing of this flexible phase using THF led to a permanently porous phase without a gate-opening effect. Furthermore, we find that we can change the metallic composition of the MOP, and yet retain flexibility. By showing that gate-opening can be switched on and off depending on the solvent of crystallisation, these findings have implications for the solution-based processing of MOPs.
机译:开门气体吸附在金属有机框架中是众所周知的,它与结构的柔韧性以及传感和气体吸收的有利特性有关。在这里,我们表明金属有机多面体(MOP)的开门也是可能的,并且取决于晶格中的分子组织。由于MOP的溶解性,通过用不同的溶剂处理合成了灯笼型MOP的几种可互换的溶剂化物。通过使用甲醇获得的一个相响应于二氧化碳的吸收而在晶格中引起开门效应。用原位粉末X射线衍射和同时的吸附实验彻底研究了吸附过程。同时,使用THF对该柔性相的溶液处理导致永久的多孔相而没有开门效应。此外,我们发现我们可以更改MOP的金属成分,但仍保持灵活性。通过显示可以根据结晶的溶剂打开和关闭开门,这些发现对于基于溶液的MOP处理具有重要意义。

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