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聚(离子液体)离聚物有助于防止单中心氧还原催化剂中的活性位点聚集。

Poly(ionic liquid) Ionomers Help Prevent Active Site Aggregation, in Single-Site Oxygen Reduction Catalysts.

作者信息

Favero Silvia, Li Alain, Wang Mengnan, Uddin Fayyad, Kuzuoglu Bora, Georgeson Arthur, Stephens Ifan E L, Titirici Maria Magdalena

机构信息

Department of Chemical Engineering, Imperial College London, SW7 2AZ London, U.K.

Department of Materials, Imperial College London, SW7 2AZ London, U.K.

出版信息

ACS Catal. 2024 May 7;14(10):7937-7948. doi: 10.1021/acscatal.4c01418. eCollection 2024 May 17.

Abstract

Anion exchange membrane fuel cells (AEMFCs) can produce clean electricity without the need for platinum-group metals at the cathode. To improve their durability and performance, most research investigations so far have focused on optimizing the catalyst and anion exchange membrane, while few studies have been dedicated to the effect of the ionomer. Herein, we address this gap by developing a poly(ionic liquid)-based ionomer and studying its effect on oxygen transport and oxygen reduction kinetics, in comparison to the commercial proton exchange and anion exchange ionomers Nafion and Fumion. Our study shows that the choice of ionomer has a dramatic effect on the morphology of the catalyst layer, in particular on iron aggregation. We also observed that the quality of the catalyst layer and the degree of iron aggregation can be correlated to the rheological properties of the catalyst ink. Moreover, this work highlights the impact of the ionomer on the resistance to oxygen transport and reports improved oxygen diffusion compared to Nafion, for poly(ionic liquid)s with fluorinated anions. Finally, the performance of the catalyst-ionomer layer for oxygen reduction was tested with a rotating disc electrode (RDE) and a gas diffusion electrode (GDE). We observed dramatic differences between the two configurations, which we attribute to the different morphologies of the catalyst layer. In summary, our study highlights the dramatic and overlooked effect of the ionomer and the limitations of the RDE in predicting fuel cell performance.

摘要

阴离子交换膜燃料电池(AEMFCs)可以在阴极无需铂族金属的情况下产生清洁电力。为了提高其耐久性和性能,迄今为止大多数研究都集中在优化催化剂和阴离子交换膜上,而很少有研究致力于离聚物的影响。在此,我们通过开发一种基于聚离子液体的离聚物并研究其对氧传输和氧还原动力学的影响来填补这一空白,同时与商业质子交换离聚物和阴离子交换离聚物Nafion和Fumion进行比较。我们的研究表明,离聚物的选择对催化剂层的形态有显著影响,特别是对铁的聚集。我们还观察到催化剂层的质量和铁的聚集程度与催化剂油墨的流变性能相关。此外,这项工作突出了离聚物对氧传输阻力的影响,并报告了与Nafion相比,含氟阴离子的聚离子液体的氧扩散有所改善。最后,用旋转圆盘电极(RDE)和气体扩散电极(GDE)测试了催化剂 - 离聚物层的氧还原性能。我们观察到两种配置之间存在显著差异,我们将其归因于催化剂层的不同形态。总之,我们的研究突出了离聚物的显著且被忽视的影响以及RDE在预测燃料电池性能方面的局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2207/11106738/468ceae2f0b7/cs4c01418_0001.jpg

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