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调控双位点Pd/FeO/C催化剂的界面水网络用于高效甲酸电氧化

Modulating the Interfacial Water Network of Dual-Site Pd/FeO/C Catalyst for Efficient Formate Electrooxidation.

作者信息

Li Yongjia, Zhang Kaixin, Ji Yingjie, Tang Zheng, Yao Yebo, Liu Xia, Wang Dewei, Wang Xiaoxuan, Shi Lanlan, Nie Kaiqi, Yang Zhiyu, Xie Jiangzhou, Yan Yi-Ming

机构信息

State Key Lab of Organic-Inorganic Composites, Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, People's Republic of China.

Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2023 Jun 14;15(23):28790-28798. doi: 10.1021/acsami.3c03046. Epub 2023 Jun 2.

Abstract

The rational design of electrocatalysts for formate oxidation reaction (FOR) in alkaline media is crucial to promote the practical applications of direct formate fuel cells (DFFCs). The FOR kinetic on palladium (Pd) based electrocatalysts is strongly hindered by unfavorably adsorbed hydrogen (H) as the major intermediate species blocking the active sites. Herein, we report a strategy of modulating the interfacial water network of dual-site Pd/FeO/C catalyst to significantly enhance the desorption kinetics of H during FOR. Aberration-corrected electron microscopy and synchrotron characterizations revealed the successful construction of Pd/FeO interfaces on carbon support as a dual-site electrocatalyst for FOR. Electrochemical tests and in situ Raman spectroscopy results showed that H could be effectively removed from the active sites of the as-designed Pd/FeO/C catalyst. CO-stripping voltammetry and density functional theory calculations (DFT) demonstrated that the introduced FeO could effectively accelerate the dissociative adsorption of water molecules on active sites, which accordingly generates adsorbed hydroxyl species (OH) to facilitate the removal of H during FOR. This work provides a novel route to develop advanced FOR catalysts for fuel cell applications.

摘要

合理设计用于碱性介质中甲酸氧化反应(FOR)的电催化剂对于推动直接甲酸燃料电池(DFFC)的实际应用至关重要。基于钯(Pd)的电催化剂上的FOR动力学受到不利吸附的氢(H)的强烈阻碍,氢作为主要中间物种会阻塞活性位点。在此,我们报道了一种调节双位点Pd/FeO/C催化剂界面水网络的策略,以显著提高FOR过程中H的解吸动力学。经像差校正的电子显微镜和同步加速器表征揭示了在碳载体上成功构建了Pd/FeO界面作为用于FOR的双位点电催化剂。电化学测试和原位拉曼光谱结果表明,H可以从所设计的Pd/FeO/C催化剂的活性位点有效去除。CO溶出伏安法和密度泛函理论计算(DFT)表明,引入的FeO可以有效加速水分子在活性位点上的解离吸附,从而产生吸附的羟基物种(OH),以促进FOR过程中H的去除。这项工作为开发用于燃料电池应用的先进FOR催化剂提供了一条新途径。

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