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A Hydrogen Evolution Reaction Determination System Integrated High Electrocatalyst Palladium Nano-Electrode Ensemble

机译:氢化反应测定系统集成的高电催化剂钯纳米电极整合

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The aim of this work is to develop a high electrocatalyst system for hydrogen evolution utilizing palladium electrode ensemble (Pd-NEE). The work proposes a novel fabrication process to fabricate Pd-NEE using electroless deposition of Pd in a thin porous polycarbonate (PC) film for high performance electrochemical detection. Scanning electron microscopy (SEM) in conjunction with energy dispersive X-ray spectroscopy (EDS) are used to characterize the morphology and composition of Pd-NEE. It shows the best performance for hydrogen evolution reaction on Pd-NEE than other electrodes including bulk Pd, bulk Au and gold nanoelectrode ensemble. The Pd-NEE has a linear peak current response of the removal of adsorbed hydrogen over the tested sample concentration range. The effect of scan rate for voltammetric analysis is investigated. It is found that peak currents decrease as the scan rate from 0.5-0.05 V/s, but increase as the scan rate is lower than 0.05 V/s. It is demonstrated that hydrogen absorption and desorption on Pd-NEE is faster than that on other materials. A high electrocatalyst system is developed for hydrogen evolution reaction (HER).
机译:这项工作的目的是利用钯电极合并(PD-NEE)开发一种高电催化剂系统。该工作提出了一种新颖的制造方法,用于在薄多孔聚碳酸酯(PC)膜中使用Pd的无电沉积来制造PD-NEE,用于高性能电化学检测。扫描电子显微镜(SEM)与能量分散X射线光谱(EDS)结合使用,用于表征PD-NEE的形态和组成。它显示了PD-NEE上的氢进化反应的最佳性能,而不是其他电极,包括散装Pd,散装Au和金纳米电极整体。 PD-NEE具有在测试的样品浓度范围内除去吸附氢的线​​性峰值电流响应。研究了伏安分析扫描速率的影响。发现峰值电流随着0.5-0.05 v / s的扫描速率而降低,但随着扫描速率的增加,随着扫描速率低于0.05 v / s。结果表明,PD-NEE上的氢吸收和解吸比其他材料更快。为氢气进化反应(她)开发了高电催化剂系统。

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