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首页> 外文期刊>Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films >Decorated fractal Ni-Cu foam with Pd nanoparticles as a high-performance electrocatalyst toward hydrogen evolution reaction
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Decorated fractal Ni-Cu foam with Pd nanoparticles as a high-performance electrocatalyst toward hydrogen evolution reaction

机译:Decorated fractal Ni-Cu foam with Pd nanoparticles as a high-performance electrocatalyst toward hydrogen evolution reaction

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? 2022Fractal Ni-Cu foam with palladium nanoparticles on (Ni-Cu foam / Pd) was prepared by electrodeposition and galvanic replacement method. The results showed that after the fabrication of Pd particles on Ni-Cu foam, the hydrogen evolution reaction (HER) activity of the electrode improved dramatically. The morphology and phase structure of deposited layers were studied by field emission scanning electron microscopy, and X-ray diffraction methods, respectively. In order to investigate the morphology of the coatings in more details, transmission electron microscope was used, which its figures authenticated the presence of Pd nanoparticles on the fractal structures of Ni-Cu. Based on the electrochemical tests in KOH (1.0 M), the Ni-Cu foam / Pd electrode has good electrocatalytic properties, with a low overpotential of 134 mV at 10 mA cm?2 and Tafel slope of 72 mV dec?1. Cyclic voltammetry measurements showed that the Ni-Cu foam/Pd possesses a high electrochemical surface area of 112.5 cm2 that was attributed to the presence of both fractal Ni-Cu foam and Pd nanoparticles. Overall, this study proposes a feasible approach for the fabrication of a highly-porous, super hydrophilic, and scalable electrode with a great performance toward HER.
机译:?2022采用电沉积和电化学置换法制备了钯纳米颗粒(Ni-Cu泡沫/Pd)的分形Ni-Cu泡沫。结果表明,在泡沫Ni-Cu上制备Pd颗粒后,电极的析氢反应(HER)活性显著提高。分别采用场发射扫描电子显微镜和X射线衍射法研究了沉积层的形貌和相结构。为了更详细地研究涂层的形貌,使用透射电子显微镜,其图验证了Ni-Cu分形结构上Pd纳米颗粒的存在。基于KOH(1.0 M)的电化学测试,Ni-Cu泡沫/Pd电极具有良好的电催化性能,在10 mA cm?2处具有134 mV的低过电位和72 mV dec?1的Tafel斜率。循环伏安法测试表明,泡沫镍铜/钯具有112.5 cm2的高电化学表面积,这归因于分形泡沫镍铜和钯纳米颗粒的存在。综上所述,本研究为制备高孔性、超亲水性、可伸缩性、对HER具有良好性能的电极提出了一种可行的方法。

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