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Bimetallic PtAu electrocatalysts for the oxygen reduction reaction: challenges and opportunities

机译:双金属PTAU电催化剂用于氧气还原反应:挑战和机遇

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Highly active, durable oxygen reduction reaction (ORR) electrocatalysts have an essential role in promoting the continuous operation of advanced energy technologies such as fuel cells and metal-air batteries. Considering the scarce reserve of Pt and its unsatisfactory overall performance, there is an urgent demand for the development of new generation ORR electrocatalysts that are substantially better than the state-of-the-art supported Pt-based nanocatalysts, such as Pt/C. Among various nanostructures, bimetallic PtAu represents one unique alloy system where highly contradictory performance has been reported. While it is generally accepted that Au may contribute to stabilizing Pt, its role in modulating the intrinsic activity of Pt remains unclear. This perspective will discuss critical structural issues that affect the intrinsic ORR activities of bimetallic PtAu, with an eye on elucidating the origin of seemingly inconsistent experimental results from the literature. As a relatively new class of electrodes, we will also highlight the performance of dealloyed nanoporous gold (NPG) based electrocatalysts, which allow a unique combination of structural properties highly desired for this important reaction. Finally, we will put forward the challenges and opportunities for the incorporation of these advanced electrocatalysts into membrane electrode assemblies (MEA) for actual fuel cells.
机译:高活性的,耐用的氧还原反应(ORR)电催化剂在促进的先进能源技术,如燃料电池和金属 - 空气电池的连续操作中起重要作用。考虑到Pt和其不尽人意的整体性能的稀缺储备,对于新一代ORR电催化剂基本上优于发展的迫切需求国家的最先进的支持的基于铂纳米催化剂,如Pt / C。在各种纳米结构中,双金属PTAU代表了一种独特的合金系统,其中报道了高度矛盾的性能。虽然通常接受Au可能有助于稳定Pt,但其在调节PT的内在活性方面的作用仍不清楚。这种观点将讨论影响双金属的pTau的内在ORR活动,着眼于阐明的文献中看似矛盾的实验结果的由来关键的结构性问题。作为一类相对较新的电极,我们还将突出Deployed纳米孔金(NPG)电催化剂的性能,这允许对这一重要反应非常需要的结构性能的独特组合。最后,我们将提出将这些先进电催化剂掺入膜电极组件(MEA)的挑战和机会,用于实际燃料电池。

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