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首页> 外文期刊>ACS applied materials & interfaces >Boosted Electron-Transfer Kinetics of Hydrogen Evolution Reaction at Bimetallic RhCo Alloy Nanotubes in Acidic Solution
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Boosted Electron-Transfer Kinetics of Hydrogen Evolution Reaction at Bimetallic RhCo Alloy Nanotubes in Acidic Solution

机译:在酸性溶液中的双金属Rhco合金纳米管中的氢气进化反应的增强电子转移动力学

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RhCo alloy nanotubes were synthesized via the reduction of single-phase Co2RhO4 nanotubes. The reduction was conducted by thermal annealing of the Co2RhO4 nanotubes under hydrogen gas flow. The crystallinity of the prepared RhCo alloy nanotubes depended on the reduction temperature: amorphous phase (200 degrees C reduction) and the crystalline phase (300 degrees C reduction). The hydrogen evolution reaction (HER) on RhCo alloys was investigated with voltammetry in 1.0 M HClO4 solution. Amorphous RhCo alloys provided lower overpotential than the crystalline counterpart despite their similar morphology and composition. Of great interest, amorphous RhCo alloy nanotubes exhibited an outstanding HER electroactivity verified with a low overpotential at -10 mA cm(-2) (-22 mV) and a small Tafel slope (-24.1 mV dec(-1)), outperforming commercial Pt, pure Rh metal, and the other previously reported Rh-based catalysts. This excellent HER activity of amorphous RhCo nanotubes was attributed to the amorphous structure having a large electrochemical surface area and maximized Rh-Co interfaces in the alloy facilitating HER Active but expensive Rh alloyed with less active but cheap Co was successfully demonstrated as a potential cost-effective HER catalyst.
机译:通过减少单相CO 2 RHO4纳米管合成RHCO合金纳米管。通过在氢气流动下通过CO 2 RO4纳米管的热退火进行还原。制备的RHCO合金纳米管的结晶度依赖于还原温度:无定形相(减少200℃)和结晶相(减少300℃)。用伏安法在1.0M HClO 4溶液中研究了RhCO合金上的氢进化反应(她)。尽管它们相似的形态和组成,无定形的Rhco合金提供比结晶对应的低流通件。非常兴趣的是,无定形的Rhco合金纳米管在-10mA cm(-22mV)和小Tafel斜坡(-24.1mV(-1)),表现出优于商业的效果,验证了核实的优异的验证Pt,纯Rh金属和另一种先前报告的Rh基催化剂。这种优异的非晶rhco纳米管的活性归因于具有大电化学表面积的无定形结构,并且在合金中的合金中具有最大的Rh-Co界面,便于其活性但昂贵的Rh合金化,并且成功地证明了潜在的成本 - 有效的催化剂。

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