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Scanning Electrochemical Microscopy of Redox-Mediated Hydrogen Evolution Catalyzed by Two-Dimensional Assemblies of Palladium Nanoparticles

机译:二维组装钯纳米粒子催化氧化还原介导的析氢的扫描电化学显微镜

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摘要

The kinetics of the hydrogen evolution reaction (HER) catalyzed by two-dimensional assemblies of 13 nm diameter palladium (Pd) nanoparticles on mica substrates was investigated by scanning electrochemical microscopy (SECM).The assemblies were prepared by electrostatic adsorption of citrate-stabilized Pd nanoparticles on poly-L-lysine treated mica.Atomic force microscopy (AFM) studies of the adsorption process provided information on the nanoparticle number density as a function of the adsorption time.The HER kinetics was determined by examining SECM feedback approach curves,employing the methyl viologen (MV~(2+/+·)) couple as the redox probe.With this configuration,the potential of the Pd nanoparticles is effectively determined by the local concentration ratio of the redox probe.The overpotential for proton reduction can be finely tuned by the concentration of the redox species,the size of the ultramicroelectrode (UME) tip,and the distance between the UME and the nanoparticle assembly.The SECM analysis allowed the mean exchange current density per Pd nanoparticle [j_(0(pH=3))=(1.19 ± 0.08) x 10~(-6) A cm~(-2)] to be evaluated.Significantly,the SECM methodology described is highly sensitive to the transfer coefficient of the HER,with a value of 0.5 providing the most satisfactory fit in the overpotential range investigated.It is concluded that the reactivity of the Pd nanoparticles is comparable to the bulk metal,which is consistent with the bulk-like electronic structure of Pd clusters of this dimension.
机译:通过扫描电化学显微镜(SECM)研究了13 nm直径的钯(Pd)纳米粒子在云母基底上的二维组装催化的析氢反应(HER)动力学。通过静电吸附柠檬酸盐稳定的Pd制备组装体。原子力显微镜(AFM)对吸附过程的研究提供了有关纳米颗粒数量密度随吸附时间变化的信息。通过检查SECM反馈方法曲线,使用甲基紫精(MV〜(2 + / +·))偶合为氧化还原探针。通过这种配置,Pd纳米粒子的电势可通过氧化还原探针的局部浓度比有效地确定。质子还原的超电势可以精细地确定通过氧化还原物质的浓度,超微电极(UME)尖端的大小以及UME与纳米粒子组件之间的距离进行调整。 SECM分析允许评估每个Pd纳米颗粒的平均交换电流密度[j_(0(pH = 3))=(1.19±0.08)x 10〜(-6)cm〜(-2)]。所描述的SECM方法对HER的传递系数非常敏感,值为0.5可在所研究的超电势范围内提供最满意的拟合。结论是Pd纳米颗粒的反应性与块状金属相当,这是一致的具有这种尺寸的Pd团簇的电子结构。

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