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Cathode development for alkaline fuel cells based on a porous silver membrane

机译:基于多孔银膜的碱性燃料电池的阴极开发

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Porous silver membranes were investigated as potential substrates for alkaline fuel cell cathodes by the means of polarization curves and electrochemical impedance spectroscopy measurements. The silver membranes provide electrocatalytic function, mechanical support and a means of current collection. Improved performance, compared to a previous design, was obtained by increasing gas accessibility (using Teflon AF instead of PTFE suspension) and by adding a catalyst (MnO_2 or Pt) in the membrane structure to increase the cathode activity. This new cathode design performed significantly better (~55mAcm~(-2) at 0.8 V, ~295mAcm~(-2) at 0.6V and~630 mA cm~(-2) at 0.4V versus RHE) than the previous design (~30 mA cm~(-2) at 0.8 V, ~250 mA cm~(-2) at 0.6 V and ~500 mA cm~(-2) at 0.4 V) in the presence of 6.9 M KOH and oxygen (1 atm(abs)) at room temperature. The hydrophobisation technique of the porous structure and the addition of an extra catalyst appeared to be critical and necessary to obtain high performance. A passive air-breathing hydrogen-air fuel cell constructed from the membranes achieves a peak power density of 65mWcm~(-2) at 0.40V cell potential when operating at 25 C showing a 15mWcm~(-2) improvement compared to the previous design.
机译:通过极化曲线和电化学阻抗谱测量,研究了多孔银膜作为碱性燃料电池阴极的潜在基质。银膜提供电催化功能,机械支撑和电流收集手段。与以前的设计相比,通过提高气体可及性(使用特氟隆AF代替PTFE悬浮液)并在膜结构中添加催化剂(MnO_2或Pt)来提高阴极活性,可以提高性能。与以前的设计相比,这种新的阴极设计的性能要好得多(0.8 V时约为55mAcm〜(-2),0.6V时约为295mAcm〜(-2),0.4V时约为630mA cm〜(-2))在存在6.9 M KOH和氧气的情况下(0.8 V时约为30 mA cm〜(-2),在0.6 V时约为250 mA cm〜(-2),在0.4 V时约为500 mA cm〜(-2))(存在6.9 M KOH和氧气(1 atm(abs))在室温下。多孔结构的疏水化技术和添加额外的催化剂似乎对于获得高性能至关重要且必不可少。由膜构成的被动式呼吸氢空气燃料电池,在25°C下工作时,在0.40V的电池电势下,峰值功率密度为65mWcm〜(-2),与以前的设计相比,提高了15mWcm〜(-2)。 。

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