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Single-crystal to single-crystal mechanical contraction of metal-organic frameworks through stereoselective post-synthetic bromination

机译:通过立体选择性后合成溴化,单晶到单晶机械收缩金属 - 有机骨架

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摘要

The properties of metal-organic frameworks (MOFs) can be tuned by post-synthetic modification (PSM) to introduce specific functionalities after their synthesis. Typically, PSM is carried out on pendant functional groups or through metal/ligand exchange, preserving the structure of the MOF. We report herein the bromination of integral alkyne units in a pair of Zr4+ and Hf4+ MOFs, which proceeds stereoselectively in a single-crystal to single-crystal manner. The chemical and mechanical changes in the MOFs are ex-tensively characterised, including the crystal structures of the post-synthetically brominated materials, which show a mechanical contraction of up to 3.7% in volume. The combination of stability and chemical reactivity in these MOFs leads to the possibility of tuning mechanical properties by chemical transformation, while also opening up new routes to internal pore functionalization.
机译:可以通过合成后修饰(PSM)调整金属有机骨架(MOF)的性能,以在合成后引入特定的功能。通常,PSM在侧基官能团上或通过金属/配体交换进行,以保留MOF的结构。我们在这里报告一对Zr4 +和Hf4 + MOF中整体炔烃单元的溴化反应,该反应以单晶至单晶方式进行立体选择。 MOF的化学和机械变化具有广泛的特征,包括合成后溴化材料的晶体结构,其机械收缩量高达3.7%。这些MOF中的稳定性和化学反应性相结合,可以通过化学转化来调节机械性能,同时也为内部孔功能化开辟了新途径。

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