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Unusual Missing Linkers in an Organosulfonate-Based Primitive–Cubic (pcu)-Type Metal–Organic Framework for CO2 Capture and Conversion under Ambient Conditions

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Figshare2018-02-16 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Unusual_Missing_Linkers_in_an_Organosulfonate-Based_Primitive_Cubic_pcu_-Type_Metal_Organic_Framework_for_CO_sub_2_sub_Capture_and_Conversion_under_Ambient_Conditions/5897599
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A noninterpenetrated organosulfonate-based metal–organic framework (MOF) with a defective primitive–cubic (pcu) topology was successfully synthesized. The unusual missing linkers, along with the highest permanent porosity (∼43%) in sulfonate-MOFs, offer a versatile platform for the incorporation of alkynophilic Ag­(I) sites. The cyclic carboxylation of alkyne molecules (e.g., propargyl alcohol and propargyl amine) into α-alkylidene cyclic carbonates and oxazolidinones were successfully catalyzed by the use of Ag­(I)-embedded sulfonate-MOF under atmospheric pressure of CO2. In all the three catalytic reactions using CO2 as a C1 feedstock, the highly robust sulfonate-based MOF catalyst exhibit at least three-cycle reusability.
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2018-02-16
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