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◆ Inorganic Chemistry2026-03-30· Chemistry

Engineering Cooperative Microenvironments in a Nitro-Functionalized Trinuclear Copper Metal–Organic Framework for High-Efficiency Heterogeneous Catalysis

Yan Li, Kaisong Guo, Liming Fan, Tuoping Hu, Zhengguo Zhang, Qingjuan Lei, XiuTang Zhang

原始摘要(英文原文)· Original abstract
The deliberate engineering of cooperative catalytic microenvironments within metal–organic frameworks (MOFs) offers a powerful strategy for promoting sustainable catalysis. Herein, we report a robust nitro-functionalized trinuclear metal–organic framework, formulated as {[Cu 3 (NTCB) 2 (4,4′-bip)(DMF) 2 ]·4DMF·3H 2 O} n ( NUC-180; H 3 NTCB = 1,3,5-tri(4-carboxy-2-nitrophenyl)-2,4,6-trinitrobenzene, 4,4′-bip = 4,4′-bipyridine), featuring a high void fraction and dual nanoscale channel systems. Upon activation, NUC-180a exposes coordinatively unsaturated metal centers and strongly electron-withdrawing nitro functionalities that collectively regulate the local electronic environment and enhance substrate polarization. As a result, NUC-180a exhibits excellent heterogeneous catalytic performance for the solvent-free cycloaddition of CO 2 with epoxides under mild conditions, delivering cyclic carbonates with high efficiency, selectivity, and recyclability. Beyond CO 2 fixation, the framework also efficiently catalyzes tandem deacetalization–Knoevenagel condensation reactions. Mechanistic insights reveal that the catalytic activity originates from the synergistic interplay between Lewis-acidic metal sites and polar functional groups within the confined micropores. This work highlights nitro-functionalized MOFs as versatile platforms for cooperative catalysis without invoking classical Lewis basicity from nitro groups.
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Engineering Cooperative Microenvironments in a Nitro-Functionalized Trinuclear Copper Metal–Organic Framework for High-Efficiency Heterogeneous Catalysis — 科研速览 Science Skim