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Rapid solvent-evaporation strategy for three-dimensional cobalt-based complex hierarchical architectures as catalysts for water oxidation

机译:基于三维钴的复合层架构的快速溶剂蒸发策略作为水氧化的催化剂

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It is a challenging task to seek a highly-efficient electrocatalyst for oxygen evolution reaction (OER) of water splitting. Non-noble Co-based nanomaterials are considered as earth-abundant and effective catalysts to lower overpotential and increase polarization current density of OER. In this work, we reported, for the first time, a "rapid solvent-evaporation" strategy for the synthesis of three-dimensional (3D) cobalt complex hierarchical architectures constructed by two-dimensional (2D) nanosheets. The 3D structured cobalt complexes have excellent performances in catalyzing OER with lower onset potential, overpotential, Tafel slope and better stability than commercial IrOsub2/sub. Superior electrochemical performances would be beneficial from the unique 3D structure. This extremely simple method for 3D Co complex with good OER activities makes the complex be promising commercial OER catalyst to replace earth-rare and expensive IrOsub2/sub.
机译:寻求一种具有挑战性的任务,用于寻求用于水分裂的氧气进化反应(OER)的高效电催化剂。非贵族的Co基纳米材料被认为是土级和有效的催化剂,以降低OER的过电并增加偏振电流密度。在这项工作中,我们首次报道了一种“快速溶剂蒸发”策略,用于合成由二维(2D)纳米液构成的三维(3D)钴复合层架构的合成。 3D结构化钴络合物在催化OER具有较低的发作潜力,过电位,TAFEL坡度和比商业IRO 2 的更好的稳定性方面具有优异的性能。优越的电化学性能与独特的3D结构有益。这种具有良好OER活动的3D CO复合体的这种极其简单的方法使得复杂的商业OER催化剂取代地球稀有和昂贵的IRO 2

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