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优化基于钙钛矿氧化物的阴极催化剂层对直接氨燃料电池性能的影响。

Optimization of a Perovskite Oxide-Based Cathode Catalyst Layer on Performance of Direct Ammonia Fuel Cells.

机构信息

School of Engineering, University of Warwick, CoventryCV4 7AL, U.K.

Department of Chemical Engineering, Monash University, Clayton, Victoria3800, Australia.

出版信息

ACS Appl Mater Interfaces. 2023 Jan 11;15(1):1029-1041. doi: 10.1021/acsami.2c17253. Epub 2022 Dec 27.

Abstract

To maximize fuel cell performance, transport pathways for electrons, ions, and reactants should be connected well. This demands a well-constructed microstructure in the catalyst layer (CL). Herein we design and optimize a cathode CL for a direct ammonia fuel cell (DAFC) using a perovskite oxide as the catalyst to reduce reliance on platinum group metals (PGMs). The effects of tailoring carbon, ionomer, and polytetrafluoroethylene (PTFE) content in cathode CLs (CCLs) were explored, and several DAFCs were tested. Using the same catalyst and operating conditions, the lowest maximum current density and peak power density obtained were 85.3 mA cm and 5.92 mW cm, respectively, which substantially increased to 317 mA cm and 30.1 mW cm through proper carbon, ionomer, and PTFE optimization, illustrating the importance of an effective three-phase interface. The findings reveal that despite employment of an active catalyst for oxygen reduction at the cathode site, the true performance of the catalyst cannot be reflected unless it is supported by proper design of the CCL. The study also reveals that by optimizing the CCL, similar performances to those of Pt/C-based CCLs in literature can be obtained at a cost reduction.

摘要

为了最大限度地提高燃料电池的性能,电子、离子和反应物的传输途径应该连接良好。这要求在催化剂层(CL)中具有良好构造的微观结构。在此,我们使用钙钛矿氧化物作为催化剂,设计并优化了用于直接氨燃料电池(DAFC)的阴极 CL,以减少对铂族金属(PGM)的依赖。探索了调整阴极 CL(CCL)中碳、离聚物和聚四氟乙烯(PTFE)含量的效果,并测试了几个 DAFC。在相同的催化剂和操作条件下,获得的最低最大电流密度和峰值功率密度分别为 85.3 mA cm 和 5.92 mW cm,通过适当的碳、离聚物和 PTFE 优化,分别大幅增加到 317 mA cm 和 30.1 mW cm,这说明了有效的三相界面的重要性。研究结果表明,尽管在阴极部位使用了活性催化剂进行氧还原,但如果不通过适当设计 CCL 来支持,就无法反映催化剂的真实性能。该研究还表明,通过优化 CCL,可以以降低成本的方式获得与文献中基于 Pt/C 的 CCL 相似的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e82e/9837787/b6eacc23a278/am2c17253_0001.jpg

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