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Preparation of nickel-iron hydroxides by microorganism corrosion for efficient oxygen evolution

机译:微生物腐蚀为高效氧气进化的微生物腐蚀制备

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Nickel–iron composites are efficient in catalyzing oxygen evolution. Here, we develop a microorganism corrosion approach to construct nickel–iron hydroxides. The anaerobic sulfate-reducing bacteria, using sulfate as the electron acceptor, play a significant role in the formation of iron sulfide decorated nickel–iron hydroxides, which exhibit excellent electrocatalytic performance for oxygen evolution. Experimental and theoretical investigations suggest that the synergistic effect between oxyhydroxides and sulfide species accounts for the high activity. This microorganism corrosion strategy not only provides efficient candidate electrocatalysts but also bridges traditional corrosion engineering and emerging electrochemical energy technologies. Developing facile strategies to realize the precise construction of Ni-Fe structures is of significance for water oxidation. Here, the authors demonstrate a universal microorganism-assisted corrosion strategy for preparing highly efficient Ni-Fe composites towards oxygen evolution.
机译:镍铁复合材料在催化氧气进化方面是有效的。在这里,我们开发了一种微生物腐蚀方法来构建氢氧化镍 - 铁氢氧化物。使用硫酸盐作为电子受体的厌氧硫酸盐还原细菌在形成铁硫化铁的形成中起显着作用,其表现出优异的氧气进化的电催化性能。实验和理论研究表明,羟基氧化物和硫化物物种之间的协同效应占高活性。这种微生物腐蚀策略不仅提供有效的候选电催化剂,而且还提供了传统的腐蚀工程和新兴电化学能源技术。开发展开策略以实现Ni-Fe结构的精确构建对水氧化具有重要意义。在这里,作者证明了一种通用的微生物辅助腐蚀策略,用于制备高效的Ni-Fe复合材料朝向氧气进化。

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