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Electrocatalytic Hydrogen Evolution Reaction with Multilayer Graphene-Covered Ni Particles Synthesized by Microwave-Assisted Catalytic Methane Decomposition

机译:通过微波辅助催化甲烷分解合成的电催化氢气进化反应与多层石墨烯覆盖的Ni颗粒合成

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It is known that the type of electrocatalysts used in the hydrogen evolution reaction (HER) are critical for energy technologies such as water splitting and hydrogen fuel cells. Thus, in recent years, increasing attention has been paid to the development of noble metal-free electrocatalysts. It has recently been reported that Ni-C-based catalysts exhibit HER activity comparable to that of Pt in an acidic medium. Moreover, we have recently developed a new metal-carbon powder, which contained multilayer graphene-covered Ni particles as the main component, synthesized by multimode microwave-assisted catalytic CH_4 decomposition using a multimode microwave reactor. Thus, in this study, we investigated the electrocatalytic HER over the Ni-C powder using a digital potentiostat equipped with a potential sweep unit. Figure 1 shows the current-potential curve in the presence or absence of dissolved oxygen in an aqueous H_2SO_4 solution; the curve was obtained using a carbon paste electrode filled with the Ni-C powder. A reduction current based on HER was observed from approximately 0.0 V (referred vs. SHE), while the onset potential was shown to be slightly affected by the presence or absence of dissolved oxygen. Therefore, the Ni-C powder can be used as a noble metal-free electrocatalyst to implement the HER with excellent electrochemical performance in acidic medium.
机译:众所周知,在氢进化反应(她)中使用的电催化剂的类型对于诸如水分裂和氢燃料电池的能量技术至关重要。因此,近年来,由于贵金属无金属电催化剂的发展,增加了越来越关注。最近据报道,基于Ni-C基催化剂表现出与酸性介质中Pt的活性相当的活性。此外,我们最近开发了一种新的金属 - 碳粉,其含有多层石墨烯覆盖的Ni颗粒作为主要成分,通过多模微波辅助催化CH_4分解合成,所述多模微波反应器分解。因此,在这项研究中,我们使用配备有潜在扫描单元的数字电位器来研究通过Ni-C粉末的电催化。图1显示了在H_2SO_4水溶液中存在或不存在溶解氧的电流潜力曲线;使用填充有Ni-C粉末的碳糊电​​极获得曲线。从大约0.0V(参考与SHE)观察到基于她的减少电流,而开始潜在的发作潜力略有受溶解氧的存在或不存在的影响。因此,Ni-C粉末可用作贵金属的无金属电催化剂,以在酸性介质中实施具有优异的电化学性能。

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