首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >NiCoPt/graphene-dot nanosponge as a highly stable electrocatalyst for efficient hydrogen evolution reaction in acidic electrolyte
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NiCoPt/graphene-dot nanosponge as a highly stable electrocatalyst for efficient hydrogen evolution reaction in acidic electrolyte

机译:Nicopt / Graphene-Dot纳米泊作为高度稳定的电催化剂,用于酸性电解质中有效的氢进化反应

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This work reports the large-scale and simple synthesis of highly effective, stable, and cheap 3D nanosponge catalysts, nanoporous NiCoPt alloys wrapped in graphene dots (NiCoPt/G-dot), for the hydrogen evolution reaction (HER). The simultaneous co-reduction of the metal precursors and carbon dots was confirmed by TEM, XPS, and Raman analyses. The SEM result indicated that the G-dots act as a structure-directing agent, assisting in the generation of the 3D nanosponge complex structure, in which the metal alloy constituents with the outer G-dots synergistically stimulate the electrochemical catalytic activity. Optimization of the alloy composition, while lowering the Pt loading, resulted in the highest HER catalytic activity by the Ni48Co48Pt4/G-dot nanohybrid with a precursor molar ratio of Ni:Co:Pt = 48:48:4. XPS analysis revealed that the nanohybrid surface was enriched with Pt (up to 86.7 at%), suggesting that the alloy composition is controlled by the tendency of Pt metal to segregate towards the surface. The resulting surface electronic structure led to the superior catalytic activity of Ni48Co48Pt4/G-dot, which generated an overpotential of only 45.54 mV at a current density of 10 mA cm(-2) in acidic solution. The Ni48Co48Pt4/G-dot exhibited the highest catalytic activity, which correlated well with its having the lowest charge transfer resistance and the highest electrochemical surface area value of 57.51 cm(2). The Ni48Co48Pt4/G-dot showed good stability, retaining 94% of its current density after 21 h of operation. This was attributed to the existence of the G-dots, which acted as a protective layer. The developed 3D NiCoPt/G-dot nanosponge may be considered a promising alternative catalyst for hydrogen production. (C) 2020 Elsevier B.V. All rights reserved.
机译:这项工作报告了高效,稳定和廉价的3D纳米型催化剂,纳米多孔NiCopt合金的大规模简单合成,用于缠绕在石墨烯点(Nicopt / G点),用于氢进化反应(她)。通过TEM,XPS和拉曼分析确认金属前体和碳点的同时共减量。 SEM结果表明,G点用作结构引导剂,辅助产生3D纳米口复合结构,其中具有外G点的金属合金成分协同刺激电化学催化活性。合金组合物的优化,同时降低Pt载荷,由Ni48CO 48PT4 / G点纳米牛液的最高催化活性,具有Ni:Co:Pt = 48:48:4的前体摩尔比。 XPS分析显示,纳米冬小化表面富含Pt(高达86.7at%),表明合金组合物通过Pt金属倾向于朝向表面的倾向来控制。所得表面电子结构导致Ni48CO48PT4 / G点的优异催化活性,其在酸性溶液中的电流密度为10mA cm(-2)的电流密度产生的过电位。 Ni48CO48PT4 / G-DOT显示出最高的催化活性,其具有最低电荷转移电阻和最高电化学表面积值的催化活性最高,电化学表面积为57.51cm(2)。 Ni48CO48PT4 / G-DOT显示出良好的稳定性,在21小时后保持其电流密度的94%。这归因于存在作为保护层的G点的存在。开发的3D Nicopt / G点纳米末端可被认为是氢生产的有希望的替代催化剂。 (c)2020 Elsevier B.v.保留所有权利。

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