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首页> 外文期刊>Scientific reports. >Poly (3, 4-ethylene dioxythiophene) Supported Palladium Catalyst prepared by Galvanic Replacement Reaction for Methanol Tolerant Oxygen Reduction
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Poly (3, 4-ethylene dioxythiophene) Supported Palladium Catalyst prepared by Galvanic Replacement Reaction for Methanol Tolerant Oxygen Reduction

机译:聚(3,4-乙烯二氧噻吩)支撑钯催化剂通过电乙醇置换反应制备,用于甲醇耐氧氧还原

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Herein, we propose a facile electrochemical approach for the synthesis of Pd loaded poly 3, 4-ethylenedioxythiophene (PEDOT) electrodeposited on glassy carbon electrode (GCE) resulting in high surface area. The catalyst preparation is initiated with EDOT polymerization on GCE surface by electrochemical potential cycling method, followed by the electrodeposition of Cu from a 2?mM solution of CuSOsub4/sub in 0.1?M NaClOsub4/sub at a constant potential of +0.34?V vs. SHE in the form of Cu nanocubes on the PEDOT surface. Pd-PEDOT catalyst was then prepared by the partial substitution of copper by galvanic displacement with various concentrations of PdClsub2/sub. The prepared Pd/PEDOT electrocatalyst is found to be methanol resistant indicating its usefulness as fuel cell cathode. The prepared catalyst supports two electron transfer of oxygen reduction reaction in 0.5?M Hsub2/subSOsub4/sub. The effects of Pd and Cu contents and the quantity of PEDOT, mass and specific activities were studied. At a relatively low Pd loading of 0.57?ng/cmsup2/sup, the Pd/PEDOT should be a cost-effective alternative cathode catalyst for direct methanol fuel cells, DMFCs. This work explains the usefulness of PEDOT as good catalyst supporting material which is prepared by an eco-friendly electrochemical route.
机译:在此,我们提出了一种容易的电化学方法,用于合成Pd负载的聚3,4-乙二氧基噻吩(PEDOT)电沉积在玻碳电极(GCE)上,得到高表面积。通过电化学电位循环方法对催化剂制剂在GCE表面上对GCE聚合引发,然后将Cu的电沉积从2·mm的cuso 4 中的溶液中的0.1μmnaclo 4 在+0.34〜Vs的恒定潜力处于筛选表面上的Cu纳米孔的形式。然后通过通过具有各种浓度的Pdcl 2 通过电铜置换的部分取代来制备PD-PEDOT催化剂。发现制备的Pd / PEDOT电催化剂是甲醇抗性,表明其用作燃料电池阴极的用途。制备的催化剂支持在0.5μmH 2 4 中的两种电子转移氧还原反应。研究了Pd和Cu含量的影响以及铅谱,质量和特异性活性的效果。在相对较低的Pd负载量为0.57Ω·Ng / cm 2 ,Pd / petot应该是用于直接甲醇燃料电池的成本有效的替代阴极催化剂,DMFC。该工作解释了PEDOT作为良好的催化剂支撑材料的有用性,其通过环保电化学途径制备。

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