Carboxylative cyclization of propargylic alcohols with CO is significant in synthetic chemistry, but harsh conditions are often needed according to reported results. Herein, a new stable nitro-functionalized metal-organic framework (MOF) of {[Co(L)(bpy)(HO)]·DMF·HO·bpy} () was fabricated through the solvothermal reaction, which exhibited excellent stability in acid and basic solutions. Owing to the porous structure, unsaturated metal sites, and uncoordinated 4,4'-bpy ligands, can serve as an excellent platform for catalytic applications. Hence, Ag(I) ions were incorporated in through a postsynthetic method, and the as-synthesized Ag- catalyst with low metal loading (0.64 mol %) displayed excellent catalytic performance in the chemical fixation of CO with alkynols under room temperature and atmospheric pressure. The results of H NMR analyses further confirmed that Ag- can efficiently activate hydroxyl groups and promote the reaction. Moreover, the turnover frequency (TOF) of the Ag- catalyst can reach 262 h in a short period of time, which is a high TOF value among the state-of-the-art MOF-based catalysts for catalyzing cycloaddition of CO with propargylic alcohols.
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http://dx.doi.org/10.1021/acsami.1c13438 | DOI Listing |
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