Carbon support tuned electrocatalytic activity of a single-site metal–organic framework toward the oxygen reduction reaction |
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Authors: | Wenjie Ma Fei Wu Ping Yu Lanqun Mao |
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Affiliation: | Beijing National Laboratory for Molecular Sciences, Key Laboratory of Analytical Chemistry for Living Biosystems, Institute of Chemistry, The Chinese Academy of Sciences (CAS), Beijing 100190 China.; College of Chemistry, Beijing Normal University, Xinjiekouwai Street 19, Beijing 100875 China ; University of Chinese Academy of Sciences, Beijing 100049 China |
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Abstract: | Metal–organic frameworks (MOFs) possess fantastic features such as structural diversity, tunable accessible pores and atomically dispersed active sites, holding tremendous potential as highly versatile platforms for fabricating single-site catalysts. The electrocatalytic activity of single-site MOFs can be improved and tuned via several approaches; however, the exploitation of different carbon supports to modulate the nature of single active sites in MOFs for electrocatalysis has not been reported. Here, we find that the electrocatalytic activity of single-site MOFs toward the oxygen reduction reaction (ORR) can be tuned by using carbon nanomaterials, i.e., carbon nanotubes and graphene, as supports through MOF–support interactions in the manner of geometric and electronic effects. The introduction of MOF–support interactions not only greatly improves the electrocatalytic performance of MOFs toward the ORR in terms of onset and half-wave potentials and current density, but also alters the reaction pathway of the ORR. This finding provides a new horizon for the design and synthesis of single-site MOFs for electrocatalysis.MOF–support interactions are proposed for the first time for tuning the electrocatalytic activity of single-site MOFs in the manner of geometric and electronic effects. |
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