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Highly durable carbon nanotube-supported Pd catalysts covered with silica layers for the oxygen reduction reaction

机译:高度耐用的碳纳米管负载的Pd催化剂覆盖有用于氧化还原反应的二氧化硅层

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摘要

Pd metal supported on carbon nanotubes (Pd/CNT) for use as a cathode catalyst in polymer electrolyte fuel cells was covered with silica layers a few nanometers thick to improve the durability of the catalyst under severe cathode conditions. The silica-coated Pd/CNT cathode catalyst showed similar activity for the oxygen reduction to Pd/CNT despite coverage of the Pd metal with a silica insulator. In addition, the silica-coated Pd/CNT was highly durable during potential cycling between 0.05 and 1.20 V (vs. reversible hydrogen electrode) in aqueous HClO_4 while Pd/CNT suffered serious deactivation under the same conditions. The silica layers in the silica-coated Pd/CNT prevent the diffusion of dissolved Pd species from the Pd metal out of the layers. Therefore, silica-coated Pd/CNT was highly durable under the cathode conditions. Furthermore, coverage of Pd/CNT with silica layers inhibited the two-electron reduction of oxygen to H_2O_2.
机译:负载在碳纳米管(Pd / CNT)上的钯金属用作聚合物电解质燃料电池中的阴极催化剂,其上覆盖了几纳米厚的二氧化硅层,以提高催化剂在苛刻的阴极条件下的耐久性。尽管用二氧化硅绝缘体覆盖了Pd金属,但二氧化硅涂覆的Pd / CNT阴极催化剂显示出与Pd / CNT相似的氧还原活性。此外,二氧化硅涂层的Pd / CNT在HClO_4水溶液中在0.05至1.20 V(相对于可逆氢电极)之间的电势循环期间具有很高的耐久性,而Pd / CNT在相同条件下会严重失活。二氧化硅涂覆的Pd / CNT中的二氧化硅层可防止溶解的Pd物种从Pd金属扩散到层外。因此,二氧化硅涂覆的Pd / CNT在阴极条件下是高度耐用的。此外,用二氧化硅层覆盖Pd / CNT抑制了氧的两个电子还原为H_2O_2。

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