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Trends in activity for the oxygen evolution reaction on transition metal (M = Fe Co Ni) phosphide pre-catalysts

机译:过渡金属(M = FeCoNi)磷化物预催化剂上氧释放反应的活性趋势

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摘要

Transition metal phosphides (TMPs) have recently emerged as a new class of pre-catalysts that can efficiently catalyze the oxygen evolution reaction (OER). However, how the OER activity of TMPs varies with the catalyst composition has not been systematically explored. Here, we report the alkaline OER electrolysis of a series of nanoparticulate phosphides containing different equimolar metal (M = Fe, Co, Ni) components. Notable trends in OER activity are observed, following the order of FeP < NiP < CoP < FeNiP < FeCoP < CoNiP < FeCoNiP, which indicate that the introduction of a secondary metal(s) to a mono-metallic TMP substantially boosts the OER performance. We ascribe the promotional effect to the enhanced oxidizing power of bi- and tri-metallic TMPs that can facilitate the formation of MOH and chemical adsorption of OH groups, which are the rate-limiting steps for these catalysts according to our Tafel analysis. Remarkably, the tri-metallic FeCoNiP pre-catalyst exhibits exceptionally high apparent and intrinsic OER activities, requiring only 200 mV to deliver 10 mA cm–2 and showing a high turnover frequency (TOF) of ≥0.94 s–1 at the overpotential of 350 mV.
机译:过渡金属磷化物(TMP)最近作为一种新型的预催化剂出现,可以有效催化氧释放反应(OER)。然而,尚未系统地探索TMPs的OER活性如何随催化剂组成而变化。在这里,我们报告了碱性OER电解的一系列包含不同等摩尔金属(M = Fe,Co,Ni)组分的纳米微粒磷化物。观察到OER活性的显着趋势,遵循FeP 基团的化学吸附,这是这些催化剂的限速步骤根据我们的Tafel分析。值得注意的是,三金属FeCoNiP预催化剂表现出异常高的表观和固有OER活性,仅需200 mV即可输送10 mA cm –2 ,并具有≥0.94s的高周转频率(TOF)。 –1 在350 mV的超电势下。

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