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Efficient oxygen evolution reaction on RuO2 nanoparticles decorated onion-like carbon (OLC)

机译:RuO2纳米颗粒修饰洋葱状碳(OLC)的高效析氧反应

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Oxygen evolution reaction (OER) is an important half-cell reaction of the electrical water splitting, for its high overpotential associated with sluggish OER kinetics. Therefore, it is critical to develop highly active and durable electrocatalysts to reduce the overpotential. Herein, ultra-small RuO2 nanoparticles (NPs) supported on onion-like carbon (OLC) and carbon nanotube (CNT) are successfully synthesized by means of wet impregnation combined with annealing treatment, respectively. The microstructure characterization results showed OLC perfect graphitic carbon layer structure, and the RuO2 NPs supported on the OLC possess larger particle size compared with the RuO2 NPs supported on the CNT. Moreover, the electronic structure of Ru in RuO2/OLC was also optimized by the OLC support to be beneficial for the OER. The OER performance of the catalysts were investigated in 1 M KOH solution. The results show RuO2/OLC has a comparable OER activity to the commercial RuO2, but a significantly higher mass activity than the commercial RuO2. When compared with the RuO2/CNT, RuO2/OLC not only exhibits lower overpotential and Tafel slop, but also owns more active sites and higher TOF value, indicating the OLC support improved the OER activity of RuO2/OLC. Moreover, RuO2/OLC showed a superior stability compared with RuO2/CNT, which can be attributed to the excellent electrochemical oxidation-resistance of the OLC.
机译:析氧反应(OER)是电分解水的重要半电池反应,因为它的高过电位与缓慢的OER动力学有关。因此,开发高活性和耐久的电催化剂以降低过电位至关重要。本文分别采用湿浸结合退火处理的方法,成功合成了负载在类洋葱碳(OLC)和碳纳米管(CNT)上的超小RuO2纳米颗粒(NPs)。微观结构表征结果表明,OLC完美的石墨碳层结构,与CNT负载的RuO2 NPs相比,OLC负载的RuO2 NPs具有更大的粒径。此外,OLC载体还优化了RuO2/OLC中Ru的电子结构,以利于OER的发展。在1 M KOH溶液中研究了催化剂的OER性能。结果表明,RuO2/OLC具有与商业RuO2相当的OER活性,但质量活性明显高于商业RuO2。与RuO2/CNT相比,RuO2/OLC不仅具有更低的过电位和Tafel slop,而且具有更多的活性位点和更高的TOF值,表明OLC载体提高了RuO2/OLC的OER活性。此外,与RuO2/CNT相比,RuO2/OLC表现出优异的稳定性,这可归因于OLC优异的耐电化学氧化性能。

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