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空心铂包覆钌铜纳米笼优化羟基吸附用于高效氢氧化电催化

Hollow Pt-Encrusted RuCu Nanocages Optimizing OH Adsorption for Efficient Hydrogen Oxidation Electrocatalysis.

作者信息

Wei Licheng, Dong Yuanting, Yan Wei, Zhang Yuqi, Zhan Changhong, Huang Wei-Hsiang, Pao Chih-Wen, Hu Zhiwei, Lin Haixin, Xu Yong, Geng Hongbo, Huang Xiaoqing

机构信息

State Key Laboratory of Physical Chemistry of Solid Surfaces, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, 361005, China.

National energy key laboratory for new hydrogen-ammonia energy technologies, Foshan Xianhu Laboratory, 1 Yangming Road, Foshan, 528200, China.

出版信息

Angew Chem Int Ed Engl. 2025 Feb 10;64(7):e202420177. doi: 10.1002/anie.202420177. Epub 2024 Dec 5.

Abstract

As one of the best candidates for hydrogen oxidation reaction (HOR), ruthenium (Ru) has attracted significant attention for anion exchange membrane fuel cells (AEMFCs), although it suffers from sluggish kinetics under alkaline conditions due to its strong hydroxide affinity. In this work, we develop ternary hollow nanocages with Pt epitaxy on RuCu (Pt-RuCu NCs) as efficient HOR catalysts for application in AEMFCs. Experimental characterizations and theoretical calculations confirm that the synergy in optimized Pt-RuCu NCs significantly modifies the electronic structure and coordination environment of Ru, thereby balancing the binding strengths of H* and OH* species, which leads to a markedly enhanced HOR performance. Specifically, the optimized Pt-RuCu NCs/C achieves a mass activity of 5.91 A mg , which is ~3.3, ~2.2, and ~15.0 times higher than that of RuCu NCs/C (1.38 A mg ), PtRu/C (1.83 A mg ) and Pt/C (0.37 A mg ), respectively. Impressively, the specific peak power density of fuel cells reaches 15.9 W mg , significantly higher than those of most reported PtRu-based fuel cells.

摘要

作为氢氧化反应(HOR)的最佳候选材料之一,钌(Ru)在阴离子交换膜燃料电池(AEMFC)中引起了广泛关注,尽管由于其对氢氧化物的强亲和力,在碱性条件下其动力学较为迟缓。在这项工作中,我们开发了在RuCu上外延生长Pt的三元中空纳米笼(Pt-RuCu NCs)作为用于AEMFC的高效HOR催化剂。实验表征和理论计算证实,优化后的Pt-RuCu NCs中的协同作用显著改变了Ru的电子结构和配位环境,从而平衡了H和OH物种的结合强度,这导致HOR性能显著提高。具体而言,优化后的Pt-RuCu NCs/C实现了5.91 A mg的质量活性,分别比RuCu NCs/C(1.38 A mg)、PtRu/C(1.83 A mg)和Pt/C(0.37 A mg)高约3.3倍、2.2倍和15.0倍。令人印象深刻的是,燃料电池的比峰值功率密度达到15.9 W mg,明显高于大多数报道的基于PtRu的燃料电池。

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