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Conductive diamond powder inclusion in drop-tasted graphene for enhanced effectiveness as electrocatalyst substrate

机译:导电金刚石粉末包含在滴落的石墨烯中,以提高效果作为电催化剂基材

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摘要

The possibility of enhancing the electrochemical activity of multilayer graphene (GR) films formed by a simple drop-casting method by the inclusion of a moderate amount of boron-doped diamond powder (BDDP) into the immobilized active material was investigated. Raman spectroscopy experiments suggested that, for electrodes covered with GR-BDDP, edge planes of the graphene platelets are better exposed compared to the case of the GR-modified ones. Cyclic voltammetry measurements performed by using an outer-sphere redox system as test-compound demonstrated that BDDP addition results in an apparent electrocatalytic effect, which was ascribed (based upon the influence of the sweep rate on the voltammetric response) to a larger fraction of pores in the GR-BDDP coating, induced by its more loose morphological structure. The investigation of the methanol oxidation at the Pt-decorated electrodes demonstrated that the use of a GR-BDDP composite as support for the electrocatalyst facilitates the overall process, allows lower Tafel slopes and provides to the supported platinum a better resistance to fouling via CO-poisoning.
机译:研究了通过将中等量的硼掺杂的金刚石粉末(BDDP)包含在固定化的活性物质中,研究了通过简单的滴铸法形成的多层石墨烯(GR)膜的电化学活性的可能性。拉曼光谱实验表明,对于用GR-BDDP覆盖的电极,与GR改性的壳体相比,石墨烯血小板的边缘平面更好地暴露。通过使用外球氧化还原系统进行的循环伏安法测量作为测试化合物表明,BDDP添加导致表观电催化效应,其归因于较大的孔径较大的孔径在GR-BDDP涂层中,由其更加松散的形态结构诱导。 PT装饰电极甲醇氧化的研究表明,使用GR-BDDP复合材料作为对电催化剂的载体有助于整体过程,允许下部Tafel斜坡,并提供给支持的铂金通过共同抵抗中毒。

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