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Adjustable Ternary FeCoNi Nanohybrids for Enhanced Oxygen Evolution Reaction.

Yang YangPengkun WeiZewei HaoQilin YuHuajie LiuLu Liu
Published in: Chemistry (Weinheim an der Bergstrasse, Germany) (2019)
Water splitting as a greatly desired technology to produce clean renewable energy, but is hampered by the sluggish oxygen evolution reaction. So, the development of highly active and durable water oxidation electrocatalysts is of primarily significance for energy conversion. Here, a facial strategy to synthesize FeCoNi nanohybrids with adjustable morphological structures by using fluorine is introduced. The morphology and electrocatalytic activity of the sample is determined by the innovative introduction of fluorine. Among them, the overpotential at 10 mA cm-2 of the best sample is approximately 97 mV lower than the commercial RuO2 toward the oxygen evolution reaction in 1 m KOH. Additionally, the catalysts also have low Tafel slopes and remarkable stability.
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