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Bi-metallic MOFs possessing hierarchical synergistic effects as high performance electrocatalysts for overall water splitting at high current densities

机译:双金属MOF具有作为高电流密度的总水分的高性能电催化剂的高性能电催化剂

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摘要

Bi-metallic metal organic framework (MOF) compounds, FeNi(BDC)(DMF,F), adequately modulated through alloying of Ni and Fe, were demonstrated outstanding electrocatalysts for overall water splitting. It was composed of two well mixed bi-metallic MOF phases, Fe-rich FeNi(BDC)(DMF,F) and Ni-rich FeNi(BDC)(F), each containing two molecularly well mixed metallic clusters, to give pronounced hierarchical synergistic effects toward overall water splitting, delivering current densities of 10 and 400 mA cm(-2) at ultralow cell voltages of 1.58 and 1.90 V, respectively, outperforming the pairing of benchmark electrodes, Pt-C//IrO2. The stability of the electrodes was also excellent, experiencing only minor chronoamperometric decay after a continuous operation at 400 mA cm(-2) for 30 h. The success may be attributed to the MOF/substrate synergistic effects between the FeNi(BDC)(DMF,F) and the conductive macroporous nickel foam, the inter-molecular synergistic effects between the two constituent MOF phases, and the intra-molecular synergistic effects between the FeO6 and NiO6 clusters of the Fe-rich FeNi(BDC)(DMF,F).
机译:双金属金属有机骨架(MOF)化合物,FENI(BDC)(DMF,F)通过Ni和Fe的合金化充分调节,用于整体水分裂的卓越电催化剂。它由两种孔混合的双金属MOF相,Fe富含Feni(BDC)(DMF,F)和Ni-Feni(BDC)(F)组成,每个含有两个分子良好的混合金属簇,得到发音的等级对整个水分裂的协同作用,在1.58和1.90V的超级电池电压下提供10和400 mA(-2)的电流密度,优于基准电极,Pt-C // Iro2的配对。电极的稳定性也优异,在400mAcm(-2)的连续操作30小时后,仅经历次要的计时衰减。成功可能归因于FENI(BDC)(DMF,F)与导电大孔镍泡沫之间的MOF /底物协同效应,两个组成MOF相之间的分子间协同效应和分子内协同作用Feo6和NiO6之间的Fe-富含Feni(BDC)(DMF,F)之间的簇之间。

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