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Molecular Mixed-Metal Manganese Oxido Cubanes as Precursors to Heterogeneous Oxygen Evolution Catalysts

机译:分子混合金属锰氧化物古巴作为异质氧演化催化剂的前体

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摘要

Well-defined mixed-metal [CoMn_3O_4] and [NiMn_3O_4] cubane complexes were synthesized and used as precursors for heterogeneous oxygen evolution reaction (OER) electrocatalysts. The discrete clusters were dropcasted onto glassy carbon (GC) and indium tin oxide (ITO) electrodes, and the OER activities of the resulting films were evaluated. The catalytic surfaces were analyzed by various techniques to gain insight into the structure-function relationships of the electrocatalysts’ heterometallic composition. Depending on preparation conditions, the Co-Mn oxide was found to change metal composition during catalysis, while the Ni–Mn oxides maintained the NiMn_3 ratio. XAS studies provided structural insights indicating that the electrocatalysts are different from the molecular precursors, but that the original NiMn_3O_4 cubane-like geometry was maintained in the absence of thermal treatment (2-Ni). In contrast, the thermally generated 3-Ni develops an oxide-like extended structure. Both 2-Ni and 3-Ni undergo structural changes upon electrolysis, but they do not convert into the same material. The observed structural motifs in these heterogeneous electrocatalysts are reminiscent of the biological oxygen-evolving complex in Photosystem II, including the MMn_3O_4 cubane moiety. The reported studies demonstrate the use of discrete heterometallic oxide clusters as precursors for heterogeneous water oxidation catalysts of novel composition and the distinct behavior of two sets of mixed metal oxides.
机译:合成了定义明确的混合金属[CoMn_3O_4]和[NiMn_3O_4]古巴配合物,并将其用作异质析氧反应(OER)电催化剂的前体。将离散的簇滴铸到玻璃碳(GC)和氧化铟锡(ITO)电极上,并评估所得膜的OER活性。通过各种技术分析了催化表面,以深入了解电催化剂的杂金属成分的结构-功能关系。根据制备条件的不同,发现钴锰氧化物在催化过程中会改变金属成分,而镍锰氧化物则保持NiMn_3的比例。 XAS研究提供了结构上的见解,表明该电催化剂与分子前体不同,但在不进行热处理(2-Ni)的情况下仍保持了原始的NiMn_3O_4古巴样几何形状。相反,热产生的3-Ni形成氧化物状的延伸结构。 2-Ni和3-Ni均会在电解时发生结构变化,但不会转变为同一材料。在这些多相电催化剂中观察到的结构基序让人想起Photosystem II中的生物放氧复合物,包括MMn_3O_4古巴部分。报道的研究表明,使用离散的杂金属氧化物簇作为具有新颖组成的非均相水氧化催化剂的前体,以及两组混合金属氧化物的独特行为。

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