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Influence of the amide groups in the CO2/N2 selectivity of a series of isoreticular, interpenetrated metal-organic frameworks

机译:酰胺基对一系列等孔,互穿金属-有机骨架的CO2 / N2选择性的影响

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摘要

Here we report the use of a pillaring strategy for the design and synthesis of three novel amide-functionalized metal-organic frameworks (MOFs), TMUs-22/-23/-24, isoreticular to the recently reported imine-functionalized TMU-6 and TMU-21 MOFs. An extensive study of their CO sorption properties and selectivity for CO over N, from single gas sorption isotherms to breakthrough measurements, revealed that not only the incorporation of amide groups but also their accessibility is crucial to obtain enhanced CO sorption and CO/N selectivity. Therefore, the MOF with more accessible amide groups (TMU-24) shows a CO/N selectivity value of ca. 10 (as revealed by breakthrough experiments), which is ca. 500% and 700% of the selectivity values observed for the other amide-containing (TMU-22 and TMU-23) and imine-containing (TMU-6 and TMU-21) MOFs.
机译:在这里,我们报告了一种立柱策略,用于设计和合成三种新型的酰胺官能化金属有机骨架(MOF)TMUs-22 / -23 / -24,与最近报道的亚胺官能化TMU-6和TMU-21 MOF。从单个气体吸附等温线到突破性测量,对它们的CO吸附特性和对N的选择性的广泛研究表明,不仅酰胺基团的结合,而且酰胺的可及性对于提高CO吸附和CO / N的选择性至关重要。因此,具有更易接近的酰胺基的MOF(TMU-24)的CO / N选择性值为ca。 10(通过突破性实验显示),约为对于其他含酰胺的(TMU-22和TMU-23)和含亚胺的(TMU-6和TMU-21)MOF,观察到了500%和700%的选择性值。

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