Ruthenium Clusters Modification Carbon Layer‐Encapsulated NiCoP Nanoneedles as Advanced Electrocatalyst for Efficient Seawater Splitting Application
作者:Zhiwei Liu, Xueer Ning, Aize Hao, Muhammad Farooq Khan, Shania Rehman · 发表于:ChemSusChem · 年份:2024 · DOI:10.1002/cssc.202401197 · 被引用次数:47 · 研究领域:Electrocatalysts for Energy Conversion、Membrane-based Ion Separation Techniques、Fuel Cells and Related Materials
Abstract Developing efficient and durable electrocatalyst for seawater splitting is crucial in hydrogen production. Herein, a multi‐scale design strategy was employed to fabricate ruthenium clusters modification carbon layer‐encapsulated nickel‐cobalt‐phosphorus (Ru/C/NiCoP) nanoneedles electrocatalyst supported on nickel foam (NF). We demonstrated that Ru/C/NiCoP/NF exhibited exceptional oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) performances, with low overpotential, Tafel slope and superior stability. Furthermore, the electrocatalytic mechanism of Ru/C/NiCoP was elucidated through the combination of ex‐situ and in‐situ characterizations, along with comprehensive electrochemical tests. Strikingly, Ru clusters and the NiCoP with carbon layer engendered robust electronic interaction reaction, accelerated the charge transfer rate, provided more active sites, and enhanced intrinsic catalytic activity, thus substantially promoting the OER kinetics and HER reaction steps as well as stability. In addition, the two‐electrode system constructed with Ru/C/NiCoP/NF achieved current density of 10 mA cm −2 in both pure water and seawater at ultra‐low potential of 1.46/1.47 V, with Faraday efficiency close to 100 %. Even at higher current density of 100 mA cm −2 , the required driving voltage remained low at 1.75/1.77 V, maintaining stable operation for 150 h, outperforming most reported non‐noble catalysts. This innovative strategy provides facile and versatile...