Decoupling Redox Hopping and Catalysis in Metal-Organic Frameworks -based Electrocatalytic CO 2 Reduction.

Angewandte Chemie (International ed. in English)(2023)

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摘要
Traditional MOF e-CRR, constructed from catalytic linkers, manifest a kinetic bottleneck during their multi-electron activation. Decoupling catalysis and charge transport can address such issues. Here, we build two MOF/e-CRR systems, CoPc@NU-1000 and TPP(Co)@NU-1000, by installing cobalt metalated phthalocyanine and tetraphenylporphyrin electrocatalysts within the redox active NU-1000 MOF. For CoPc@NU-1000, the e-CRR responsive Co potential is close to that of NU-1000 reduction compared to the TPP(Co)@NU-1000. Efficient charge delivery, defined by a higher diffusion (D =4.1×10  cm  s ) and low charge-transport resistance ( =59.5 Ω) in CoPC@NU-1000 led FE =80 %. In contrast, TPP(Co)@NU-1000 fared a poor FE =24 % (D =1.4×10  cm  s and =91.4 Ω). For such a decoupling strategy, careful choice of the host framework is critical in pairing up with the underlying electrochemical properties of the catalysts to facilitate the charge delivery for its activation.
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关键词
CO2 Reduction,Electrocatalysis,Electron Transport,Metal-Organic Frameworks,Molecular Catalysts
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