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首页> 外文期刊>ACS catalysis >Shrinking the Hydrogen Overpotential of Cu by 1 V and Imparting Ultralow Charge Transfer Resistance for Enhanced H-2 Evolution
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Shrinking the Hydrogen Overpotential of Cu by 1 V and Imparting Ultralow Charge Transfer Resistance for Enhanced H-2 Evolution

机译:将Cu的氢气缩小1 V并赋予增强H-2演化的超级电荷传递电阻

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摘要

Copper and its oxides are among the best electrocatalysts for the electrochemical conversion of CO2 to value-added small organics because of its high hydrogen overvoltage, making the hydrogen evolution reaction (HER) a poor side reaction. Here we report an interesting finding that turned the nature of surface-oxidized Cu upside down in electrochemical H-2 evolution. It is commonly known that the electrochemical reactivity of a metal ion is highly sensitive to the anion to which it is coordinated in the electrolyte. In the case of Cu, when it is in the form of copper oxide, the hydrogen overvoltage is huge. Nonetheless, we found that when Cu is in coordination with Se2- ions as Cu2Se, the hydrogen overvoltage was shrunken by similar to 1 V, imparting ultralow charge transfer resistance (R-CT) that varied from 0.32 to 0.61 Omega depending on the means by which selenization was carried out. Selenization was done by two different methods. In one method, conventional stirring was employed to selenize Cu foam in a preheated NaHSe solution at 90 degrees C for 20 min. In another method, hydrothermal treatment was employed to selenize Cu foam with NaHSe solution at 120 degrees C for 1 h. The wet chemical method yielded honeycomb-like hierarchical arrays of Cu2Se sheets on Cu foam (designated as Cu2Se-ch/Cu), and the hydrothermal method yielded a uniform array of spiky rods of Cu2Se (designated as Cu2Se-ht/Cu). The HER electrocatalytic studies carried out in 0.5 M H2SO4 showed that Cu2Se-ch/Cu and Cu2Se-ht/Cu had similar kinetics, with Tafel slopes of 32 to 35 mV dec(-1), which is closer to the state-of-the-art Pt/C. Interestingly, the Cu2Se-ch/Cu delivered a total kinetic current density of -1200 mA cm(-2) when polarized up to -0.85 V vs RHE, whereas Cu2Se-ht/Cu delivered a maximum of -780 mA cm(-2) only.
机译:由于其高氢过电压,铜及其氧化物是CO 2的电化学转化为增值小型物体的最佳电催化剂,使得氢进化反应(她)副反应不良。在这里,我们报告了一个有趣的发现,使表面氧化Cu的性质颠倒在电化学H-2进化中。通常已知金属离子的电化学反应性对电解质中配位的阴离子非常敏感。在Cu的情况下,当其以氧化铜的形式时,氢过电压是巨大的。尽管如此,我们发现当Cu与Se2-离子为Cu2Se配位时,通过类似于1 V,氢过电压缩小,赋予从0.32至0.61ω的超级电荷转移电阻(R-CT)取决于手段进行哪种硒化。硒化由两种不同的方法完成。在一种方法中,使用常规搅拌在90℃下在预热的NaHSe溶液中硒化Cu泡沫20分钟。在另一种方法中,使用水热处理在120℃下用NaHSe溶液硒化Cu泡沫。湿化学方法在Cu泡沫上产生蜂窝状的Cu2Se片材阵列(指定为Cu2Se-Ch / Cu),水热法得到均匀的Cu2Se的尖峰阵列(指定为Cu2Se-HT / Cu)。在0.5M H 2 SO 4中进行的她的电催化研究表明,Cu2Se-Ch / Cu和Cu2Se-HT / Cu具有相似的动力学,Tafel斜率为32至35 mV(-1),这更接近状态 - 最新的pt / c。有趣的是,Cu2Se-Ch / Cu在高达-0.85V Vs rhe的极化时输送了-1200 mA cm(-2)的总动力电流密度,而CU2SE-HT / Cu最大为-780 mA cm(-2 ) 只要。

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