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Oxygen Evolution at Manganite Perovskite Ruddlesden-Popper Type Particles: Trends of Activity on Structure Valence and Covalence

机译:锰钙钛矿Ruddlesden-Popper型颗粒的氧逸出:结构价和共价活性的趋势

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摘要

An improved understanding of the correlation between the electronic properties of Mn-O bonds, activity and stability of electro-catalysts for the oxygen evolution reaction (OER) is of great importance for an improved catalyst design. Here, an in-depth study of the relation between lattice structure, electronic properties and catalyst performance of the perovskite Ca1−xPrxMnO3 and the first-order RP-system Ca2−xPrxMnO4 at doping levels of x = 0, 0.25 and 0.5 is presented. Lattice structure is determined by X-ray powder diffraction and Rietveld refinement. X-ray absorption spectroscopy of Mn-L and O-K edges gives access to Mn valence and covalency of the Mn-O bond. Oxygen evolution activity and stability is measured by rotating ring disc electrode studies. We demonstrate that the highest activity and stability coincidences for systems with a Mn-valence state of +3.7, though also requiring that the covalency of the Mn-O bond has a relative minimum. This observation points to an oxygen evolution mechanism with high redox activity of Mn. Covalency should be large enough for facile electron transfer from adsorbed oxygen species to the MnO6 network; however, it should not be hampered by oxidation of the lattice oxygen, which might cause a crossover to material degradation. Since valence and covalency changes are not entirely independent, the introduction of the energy position of the eg pre-edge peak in the O-K spectra as a new descriptor for oxygen evolution is suggested, leading to a volcano-like representation of the OER activity.
机译:改进对Mn-O键的电子性质,电催化剂的活性和氧释放反应(OER)稳定性之间的相关性的理解对于改进催化剂的设计非常重要。在这里,深入研究了钙钛矿Ca1-xPrxMnO3和一阶RP-系统Ca2-xPrxMnO4在x = 0、0.25和0.5的掺杂水平下的晶格结构,电子性能和催化剂性能之间的关系。通过X射线粉末衍射和Rietveld精制确定晶格结构。 Mn-L和O-K边缘的X射线吸收光谱使人们能够接近Mn价和Mn-O键的共价。氧气析出活性和稳定性通过旋转环盘电极研究来测量。我们证明,对于Mn价态为+3.7的系统,最高的活性和稳定性重合,尽管还要求Mn-O键的共价性相对较低。该观察结果表明具有高氧化还原锰活性的氧释放机理。共价应足够大,以方便电子从吸附的氧物种转移到MnO6网络;但是,它不应受到晶格氧的氧化的阻碍,因为氧的氧化可能会导致物质降解。由于化合价和化合价变化不是完全独立的,因此建议在OK光谱中引入eg 前缘峰的能量位置作为氧气释放的新描述符,从而导致火山爆发。例如OER活动的表示。

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