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Electroless deposition of palladium nanoparticles on poly(3,4-ethylene-dioxythiophene)-role of the electrode substrate

机译:钯纳米粒子对聚(3,4-乙烯 - 二氧噻吩)-tole的无电沉积电极基材

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摘要

Electroless deposition of Pd is studied comparatively on glassy carbon (GCE) and spectral graphite (SGE) electrodes modified with electrodeposited poly(3,4-ethylene-dioxythiophene) (PEDOT) layers. Computed microtomography is used to explore the bulk structure of both types of carbon electrodes. It is found that SGE has high (27%) open porosity in contrast to GCE, the latter characterized by a dense and homogeneous structure with no porosity. Despite the structural difference of the electrodes, the intrinsic electrochemical activity of PEDOT is found to remain unaffected by the type of the underlying carbon substrate used for PEDOT electrochemical deposition. Electroless deposition of Pd is carried out on pre-reduced PEDOT-coated electrodes, in the absence of additional reductants in the electrolyte solution and expected to occur at the expense of PEDOT oxidation. It is found that at constant polymerization charge of PEDOT, the amount of metal deposited on PEDOT/SGE is several times higher in comparison to PEDOT/GCE. The high effectiveness for electroless metal deposition on PEDOT/SGE is explained by the involvement of pre-reduced hydrogen embedded in the highly porous structure of SGE that acts further as additional (apart from PEDOT) reductant contributing markedly to the amount of reduced Pd ions.
机译:使用电沉积的聚(3,4-乙烯 - 二氧噻吩)(PEDOT)层改性的玻璃碳(GCE)和光谱石墨(SGE)电极对PD的无电沉积。计算的微孔映图用于探索两种类型的碳电极的散装结构。结果发现,与GCE相比,SGE具有高(27%)开孔,后者的特征在于致密和均匀的结构,没有孔隙率。尽管电极的结构差异,发现佩特的内在电化学活性仍然不受用于铅球电化学沉积的底层碳基材的类型的影响。 Pd的无电沉积在预缩小的型涂覆电极上进行,在没有电解质溶液中的另外的还原剂的情况下,预期发生在缩进氧化的费用中。结果发现,与PEDOT / GCE相比,在PEDOT的恒定聚合电荷下,沉积在PEDOT / SGE上的金属量是几倍倍。通过嵌入高度多孔结构的预制氢气的预氢化填充的预先降低的氢气的涉及,该无电金属沉积对PEDOT / SGE的高效能解释,其进一步用作显着贡献的(除了PEDOT)还原剂到降低的Pd离子的量而进一步作用。

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