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MOF-derived PdMn and PdCo bimetallic systems as bifunctional electrocatalysts for overall water splitting

双金属片 双功能 电催化剂 催化作用 分解水 析氧 材料科学 无机化学 纳米颗粒 化学工程 化学 过渡金属 双功能催化剂 可逆氢电极 塔菲尔方程 金属 协同催化 电极 X射线吸收光谱法
作者
Jordan Santiago Martinez,Inmaculada Márquez,Jaime Mazarío,Christian W. Lopes,Christian Cerezo‐Navarrete,Gonzalo Egea,Giovanni Agostini,Edgar E. Villalobos-Portillo,Otman Bazta,Susana Trasobares,José J. Calvino,Juan José Calvente,José Luis Olloqui‐Sariego,Pascual Oña‐Burgos
出处
期刊:International Journal of Hydrogen Energy [Elsevier BV]
卷期号:197: 152565-152565
标识
DOI:10.1016/j.ijhydene.2025.152565
摘要

Bimetallic Metalorganic Framework (MOF)-derived PdCo and PdMn nanoparticles have been shown to be excellent bifunctional electrocatalysts for overall electrocatalytic alkaline water splitting. Through an innovative strategy combining a soft chemical ( Q ) transformation followed by pyrolysis ( T ) of PdCo-MOF and PdMn-MOF precursors, well-defined and uniformly distributed nanoparticles supported on N-doped graphitic carbon were synthesized ( PdCo-QT and PdMn-QT , respectively). The influence of the first row transition metal into the bimetallic nanoparticles on the electrocatalytic activity for both electrocatalytic hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) was assessed. Comprehensive characterization using TEM/STEM, PXRD, Raman, XAS and XPS revealed the ultimate structural and compositional features of the synthesized materials. Notably, the bimetallic PdCo-based catalyst demonstrated the best electrocatalytic performance, exhibiting the lowest Tafel slopes for both HER and OER processes, along with superior thermodynamic and kinetic metrics compared to the bimetallic PdMn and monometallic Pd nanoparticles. The exceptional catalytic activity of the PdCo-QT electrode competes with that of benchmark materials, attributed to a synergistic effect between Pd and the secondary metal (Co), likely forming Pd–O(OH)–Co active centers. Moreover, operando and after electrocatalysis characterizations of the electrodes validate the remarkable stability and efficiency of PdCo-QT , underscoring its potential for practical water-splitting applications. • Tailored innovative synthesis of MOF derived PdCo and PdMn bimetallic catalysts. • Bimetallic nanoparticles as bifunctional electrocatalysts for alkali water splitting (WS) are assessed. • Evidence of synergistic effect between Pd and the secondary metal on WS performance. • PdCo proved best HER and OER activity with high stability and reversibility. • Active species are revealed by operando Raman and XAS spectroelectrochemistry.
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