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Dispersed platinum and tin polyaniline film electrodes for the anodes of the direct methanol fuel cell

机译:直接甲醇燃料电池阳极的分散铂和锡聚苯胺薄膜电极

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摘要

To develop better and cheaper electrocatalysts for the oxidation of methanol in direct methanol fuel cells, several combinations of a conductive polymer polyaniline (PANI) and dispersed metal particles such as Pt and Sn were examined. The anodic current for the methanol oxidation (i (MeOH)) showing the electrocatalytic activity of Pt particles was remarkably enhanced when the particles were dispersed on PANI films that should provide higher surface areas for the dispersed particles. The activity strongly depended on the morphology and the electric conductivity of the PANI films electropolymerized in five different acid solutions: H2SO4, HNO3, HClO4, HBF4, and HCl. The highest activity was achieved using the dispersed Pt particle on PANI film electropolymerized from H2SO4 polymerizing solution. In order to reduce the dispersed amount of the expensive Pt particles, other metal particles were pre-dispersed on the PANI film prepared from the H2SO4 polymerizing solution, and then Pt particles were dispersed on the film. Among the pre-dispersed metal particles attempted here (Sn, Cu, Cr, Ni, In, Co, Sb, Bi, Pb, and Mn), the highest activity was obtained with Sn particles. When the ratio of dispersed Pt to Sn particles ranges from 32:68 to 100:0, i(MeOH) is higher than that measured with the dispersed Pt particle on PANI films without the Sn particles. This means that the dispersed amount of the Pt particles could be reduced by utilizing dispersed Sn particles.
机译:为了开发用于直接甲醇燃料电池中甲醇氧化的更好和更便宜的电催化剂,研究了导电聚合物聚苯胺(PANI)和分散的金属颗粒(例如Pt和Sn)的几种组合。当Pt颗粒分散在PANI膜上时,甲醇氧化的阳极电流(i(MeOH))会显着增强,该PANI膜应为分散的颗粒提供更大的表面积。活性很大程度上取决于在五种不同的酸溶液(H2SO4,HNO3,HClO4,HBF4和HCl)中电聚合的PANI膜的形态和电导率。使用由H2SO4聚合溶液电聚合的PANI膜上的分散Pt颗粒可实现最高活性。为了减少昂贵的Pt颗粒的分散量,将其他金属颗粒预分散在由H 2 SO 4聚合溶液制备的PANI膜上,然后将Pt颗粒分散在膜上。在此处尝试的预分散金属颗粒(Sn,Cu,Cr,Ni,In,Co,Sb,Bi,Pb和Mn)中,使用Sn颗粒可获得最高的活性。当分散的Pt与Sn颗粒的比率范围为32:68至100:0时,i(MeOH)高于使用分散的Pt颗粒在不含Sn颗粒的PANI膜上测得的比率。这意味着可以通过利用分散的Sn颗粒来减少Pt颗粒的分散量。

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