Solar-Driven Nitrogen Fixation Catalyzed By Stable Radical-Containing Mofs: Improved Efficiency Induced By A Structural Transformation

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION(2020)

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摘要
Herein we present a new viologen-based radical-containing metal-organic framework (RMOF) Gd-IHEP-7, which upon heating in air undergoes a single-crystal-to-single-crystal transformation to generate Gd-IHEP-8. Both RMOFs exhibit excellent air and water stability as a result of favorable radical-radical interactions, and their long-lifetime radicals result in wide spectral absorption in the range 200-2500 nm. Gd-IHEP-7 and Gd-IHEP-8 show excellent activity toward solar-driven nitrogen fixation, with ammonia production rates of 128 and 220 mu mol h(-1) g(-1), respectively. Experiments and theoretical calculations indicate that both RMOFs have similar nitrogen fixation pathways. The enhanced catalytic efficiency of Gd-IHEP-8 versus Gd-IHEP-7 is attributed to intermediates stabilized by enhanced hydrogen bonding.
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hydrogen bonds, photocatalytic nitrogen fixation, radical-containing MOFs, single-crystal-to-single-crystal, viologen
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