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首页> 外文期刊>Synthetic Metals >Fabrication and electrochemical kinetics studies of reduced carbon quantum dots- supported palladium nanoparticles as bifunctional catalysts in methanol oxidation and hydrogen evolution reactions
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Fabrication and electrochemical kinetics studies of reduced carbon quantum dots- supported palladium nanoparticles as bifunctional catalysts in methanol oxidation and hydrogen evolution reactions

机译:减少碳量子点 - 负载钯纳米粒子作为甲醇氧化和氢进化反应的双官能催化剂的制造和电化学动力学研究

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摘要

Glassy carbon electrode, GCE, is decorated with an electrochemically-deposited layer of reduced carbon quantum dots, RCQDs. The Pd nanoparticles are then electrodeposited on RCQDs and the Pd-NPs/RCQDs/GCE is fabricated. The fabricated electrodes are characterized by some characterization techniques. The electrocatalytic performance of the electrodes for methanol oxidation reaction, MOR, and hydrogen evolution reaction, HER, are investigated using different electrochemical measurement techniques in alkaline and acidic media, respectivly. Cyclic voltammetry, CV, Linear sweep voltammetry, LSV, Chronoamperometry, CA, and electrochemical impedance spectroscopy, EIS, measurements are used to evaluate the bifunctional catalytic behavior of the Pd-NPs/RCQDs/GCE. All results are compared with Pd-NPs/GCE and the effect of decorating the GCE substrate with RCQDs is discussed. The results indicate that modification of GCE with a layer of RCQDs increases the active surface area from 0.12 for Pd-NPs/GCE to 0.22 cm(2) for Pd-NPs/RCQDs/GCE. Also E-onset and EIS parameters are calculated.
机译:玻璃状碳电极,GCE,用电化学沉积的碳量子点,RCQD装饰。然后在RCQDS上电沉积PD纳米颗粒,并制造PD-NPS / RCQDS / GCE。制造的电极的特征在于一些表征技术。各种电化学测量技术在碱性和酸性培养基中,研究了甲醇氧化反应,莫和氢进化反应的电极的电催化性能。循环伏安法,CV,线性扫描伏安法,LSV,计时率,CA和电化学阻抗光谱,EIS,测量用于评估PD-NPS / RCQDS / GCE的双官能催化行为。讨论所有结果与PD-NPS / GCE进行比较,并且讨论了用RCQDS装饰GCE基板的效果。结果表明,对于PD-NPS / RCQD / GCE的PD-NPS / GCE,将具有RCQDS层的GCE的修饰增加了0.12的0.22 cm(2)。还计算了电子发作和EIS参数。

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