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Synergy between Fe and Ni in the optimal performance of (NiFe)OOH catalysts for the oxygen evolution reaction

机译:(NiFe)OOH催化剂在放氧反应中的最佳性能中铁和镍之间的协同作用

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摘要

The oxygen evolution reaction (OER) is critical to solar production of fuels, but the reaction mechanism underlying the performance for a best OER catalyst, Fe-doped NiOOH [(Ni,Fe)OOH], remains highly controversial. We used grand canonical quantum mechanics to predict the OER mechanisms including kinetics and thus overpotentials as a function of Fe content in (Ni,Fe)OOH catalysts. We find that density functional theory (DFT) without exact exchange predicts that addition of Fe does not reduce the overpotential much. However, DFT with exact exchange predicts dramatic improvement in performance for (Ni,Fe)OOH, leading to an overpotential of 0.42 V and a Tafel slope of 23 mV/decade (dec), in good agreement with experiments, 0.3–0.4 V and 30 mV/dec. We reveal that the high spin d4 Fe(IV) leads to efficient formation of an active O radical intermediate, while the closed shell d6 Ni(IV) catalyzes the subsequent O–O coupling, and thus it is the synergy between Fe and Ni that delivers the optimal performance for OER.
机译:氧气析出反应(OER)对于太阳能的燃料生产至关重要,但是,基于最佳OER催化剂(Fe掺杂的NiOOH [(Ni,Fe)OOH])的性能所依据的反应机理仍然存在很大争议。我们使用大正则量子力学来预测OER机理,包括动力学,以及由此而来的超电势,这些势能是(Ni,Fe)OOH催化剂中Fe含量的函数。我们发现,没有精确交换的密度泛函理论(DFT)预测,添加Fe不会大大降低过电势。然而,具有精确交换的DFT预测(Ni,Fe)OOH的性能将得到显着改善,从而导致0.42 V的过电势和23 mV /十倍(十倍)的Tafel斜率,与0.3-0.4 V和30 mV / dec。我们揭示了高自旋d 4 Fe(IV)导致有效的O自由基中间体的有效形成,而闭壳d 6 Ni(IV)催化了随后的反应。 O-O耦合,因此铁和镍之间的协同作用为OER提供了最佳性能。

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