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Oxide-based precious metal-free electrocatalysts for anion exchange membrane fuel cells: from material design to cell applications

机译:用于阴离子交换膜燃料电池的氧化物基贵重无金属电催化剂:从材料设计到细胞应用

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The shortage of fossil fuel has triggered global concern due to environmental issues. Consequently, fuel cells have been designed to efficiently generate electricity from clean and renewable fuels and have gained increasing attention. In recent years, the development of earth-abundant and cost-effective materials for application in fuel cells has become a key objective worldwide to push the commercialization of this technology. Anion exchange membrane fuel cells (AEMFCs) have become one of the most popular research topics because their alkaline environment allows a wider range of cost-effective materials to be employed as membranes and electrodes. Unitized regenerative AEMFCs (UR-AEMFCs) have also attracted great research interest because of their additional energy storage capability. The electrode performance plays critical role in the practical application of (UR-)AEMFCs. Oxide-based precious metal (PM)-free electrocatalysts have been developed as one class of promising candidates for application in (UR-)AEMFCs due to their many advantages, such as low cost, earth-abundant resources, intrinsic tunable electronic structures and surface properties, and structural flexibility, which can be utilized to lower the kinetic and thermodynamic barriers of oxygen electrocatalysis in an alkaline environment. Herein, we provide a comprehensive review of recent advances in oxide-based PM-free electrocatalysts used for (UR-)AEMFCs considering their synthetic strategies, such as morphology and structure control, electronic and surface properties. In addition, their design principles and corresponding catalytic performances are summarized. The current challenges with their wide application are also discussed to provide some guidelines for the design of next-generation oxide-based electrocatalysts for (UR-)AEMFCs.
机译:由于环境问题,化石燃料短缺引发了全球关注。因此,燃料电池被设计成利用清洁和可再生燃料高效发电,并受到越来越多的关注。近年来,开发地球资源丰富且成本效益高的燃料电池材料已成为推动该技术商业化的关键目标。阴离子交换膜燃料电池(AEMFC)已成为最热门的研究课题之一,因为其碱性环境允许使用更广泛的成本效益材料作为膜和电极。单元化再生式AEMFC(UR AEMFC)也因其额外的储能能力而引起了极大的研究兴趣。电极性能在(UR-)AEMFC的实际应用中起着关键作用。无氧化物贵金属(PM)电催化剂因其成本低、地球资源丰富、固有的可调电子结构和表面性质以及结构灵活性等优点,已被开发为(UR-)AEMFC应用的一类有希望的候选材料,可以用来降低碱性环境中氧电催化的动力学和热力学势垒。在此,我们综合评述了用于(UR-)AEMFC的氧化物基无PM电催化剂的最新进展,包括其合成策略,如形貌和结构控制、电子和表面性质。此外,还总结了它们的设计原理和相应的催化性能。本文还讨论了其广泛应用所面临的挑战,为(UR-)AEMFC下一代氧化物基电催化剂的设计提供了一些指导。

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