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Upscale synthesis of a binary pillared layered MOF for hydrocarbon gas storage and separation

机译:用于烃类气体储气和分离的二元柱层MOF的高档合成

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Scaling up the synthesis of metal organic frameworks (MOFs) is necessary in order to demonstrate their potential in industrial applications. This requires the development of a cost efficient and environmentally friendly synthesis protocol which necessitates the understanding of the reaction mechanism, especially for more complex binary ligand MOF systems. Herein, we demonstrate the upscale synthesis (>= 100 g) of CPL-1[Cu-2(pzdc)(2)(pz)](n) using water as the solvent. The MOF is a binary ligand system composed of 2D layers of copper (Cu(ii)) coordinated to 2,3-pyrazinedicarboxylate (pzdc(2-)) connected by pyrazine pillars (pz). The reaction conditions were investigated and found to be optimal when using the minimum amount of reagent possible in water by adjusting the pH to 6.4 leading to CPL-1 formation with high yield (95% yields) and space-time yield (660 kg m(-3) day(-1)). In addition, the upscaled MOF exhibited similar sorption and separation capacity to the lab scaled one.
机译:缩放金属有机框架的合成是必要的,以便在工业应用中展示其潜力。 这需要开发成本效率和环保的合成方案,这需要了解反应机制,特别是对于更复杂的二元配体MOF系统。 在此,我们使用水作为溶剂证明了Cpl-1 [Cu-2(PZDC)(2)(2)(PZ)](N)的高档合成(> = 100g)。 MOF是由2D层铜(Cu(II))组成的二元配体系,与吡嗪柱(PZ)连接的2,3-吡嗪二羧酸盐(PZDC(2-))组成。 研究了反应条件,发现在水中可以通过将pH调节至6.4在水中的最小试剂,导致高产率(95%产率)和时空产量(660kg m( -3)日(-1))。 此外,上等的MOF表现出类似的吸附和分离能力,缩放了一个。

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