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一类用于燃料电池的非贵金属复合催化剂。

A class of non-precious metal composite catalysts for fuel cells.

作者信息

Bashyam Rajesh, Zelenay Piotr

机构信息

Los Alamos National Laboratory, Materials Physics and Applications, Los Alamos, New Mexico 87545, USA.

出版信息

Nature. 2006 Sep 7;443(7107):63-6. doi: 10.1038/nature05118.

Abstract

Fuel cells, as devices for direct conversion of the chemical energy of a fuel into electricity by electrochemical reactions, are among the key enabling technologies for the transition to a hydrogen-based economy. Of several different types of fuel cells under development today, polymer electrolyte fuel cells (PEFCs) have been recognized as a potential future power source for zero-emission vehicles. However, to become commercially viable, PEFCs have to overcome the barrier of high catalyst cost caused by the exclusive use of platinum and platinum-based catalysts in the fuel-cell electrodes. Here we demonstrate a new class of low-cost (non-precious metal)/(heteroatomic polymer) nanocomposite catalysts for the PEFC cathode, capable of combining high oxygen-reduction activity with good performance durability. Without any optimization, the cobalt-polypyrrole composite catalyst enables power densities of about 0.15 W cm(-2) in H2-O2 fuel cells and displays no signs of performance degradation for more than 100 hours. The results of this study show that heteroatomic polymers can be used not only to stabilize the non-precious metal in the acidic environment of the PEFC cathode but also to generate active sites for oxygen reduction reaction.

摘要

燃料电池作为通过电化学反应将燃料的化学能直接转化为电能的装置,是向氢基经济转型的关键使能技术之一。在当今正在研发的几种不同类型的燃料电池中,聚合物电解质燃料电池(PEFC)已被公认为未来零排放车辆的潜在电源。然而,要实现商业可行性,PEFC必须克服因在燃料电池电极中独家使用铂和铂基催化剂而导致的高催化剂成本障碍。在此,我们展示了一类新型的用于PEFC阴极的低成本(非贵金属)/(杂原子聚合物)纳米复合催化剂,其能够将高氧还原活性与良好的性能耐久性相结合。在未经任何优化的情况下,钴 - 聚吡咯复合催化剂在氢 - 氧燃料电池中能够实现约0.15 W cm(-2)的功率密度,并且在超过100小时的时间内没有表现出性能下降的迹象。这项研究的结果表明,杂原子聚合物不仅可以用于在PEFC阴极的酸性环境中稳定非贵金属,还可以用于生成氧还原反应的活性位点。

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