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Activity of N-coordinated multi-metal-atom active site structures for Pt-free oxygen reduction reaction catalysis: Role of *OH ligands

机译:N配位的多金属原子活性位点结构对无Pt氧还原反应催化的活性:* OH配体的作用

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摘要

We report calculated oxygen reduction reaction energy pathways on multi-metal-atom structures that have previously been shown to be thermodynamically favorable. We predict that such sites have the ability to spontaneously cleave the O2 bond and then will proceed to over-bind reaction intermediates. In particular, the *OH bound state has lower energy than the final 2 H2O state at positive potentials. Contrary to traditional surface catalysts, this *OH binding does not poison the multi-metal-atom site but acts as a modifying ligand that will spontaneously form in aqueous environments leading to new active sites that have higher catalytic activities. These *OH bound structures have the highest calculated activity to date.
机译:我们报告了先前已证明在热力学上有利的多金属原子结构上的氧还原反应能量途径。我们预测,此类位点具有自发裂解O2键的能力,然后将过度结合反应中间体。特别地,在正电势下,* OH结合态的能量低于最终的2 H2O态。与传统的表面催化剂相反,这种* OH结合不会毒害多金属原子位点,而是充当改性配体,该配体会在水性环境中自发形成,从而导致具有更高催化活性的新活性位点。这些* OH结合的结构迄今为止具有最高的计算活性。

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