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Tuning MOF Stability and Porosity via Adding Rigid Pillars

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NIAID Data Ecosystem2026-03-07 收录
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High stability and permanent porosity are the premise of general applicability for metal–organic framework materials (MOFs). By varying degrees of success on increasing the connectivity of the linear pillar 4,4′-bipyridine (bpy), two isostructural flexible frameworks [M2(obb)2(DMF)2]·2DMF (1, M = Zn or Cu; H2obb = 4,4′-oxybis­(benzoic acid), DMF = N,N-dimethylformamide) with no gas sorption are structurally modified into two rigid frameworks [Zn2(obb)2(bpy)]·DMF (2) and [Cu2(obb)2(bpy)0.5(DMF)]·2DMF (3) with notable gas sorption and separation properties. Especially for 3, it exhibits gas selective uptake for the adsorption of CO2 over N2 and CH4 under 273 K and has an interesting physically lock effect in benzene and cyclohexane sorption. The results provide a successful strategy on tuning framework stability of flexible structures via adding rigid pillars.

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2012-09-17
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