Institute for Advanced Interdisciplinary Research (iAIR), School of Chemistry and Chemical Engineering, University of Jinan, Jinan, 250022, P. R. China.
State Key Laboratory of Crystal Materials, Shandong University, Jinan, Shandong, 250100, P. R. China.
Small. 2023 Jun;19(25):e2208045. doi: 10.1002/smll.202208045. Epub 2023 Mar 17.
Alkaline membrane water electrolysis is a promising production technology, and advanced electrocatalyst and membrane electrode design have always been the core technology. Herein, an ion-exchange method and an environmentally friendly in situ green phosphating strategy are successively employed to fabricate Ru-Ru P heterogeneous nanoparticles by using hydroxyapatite (HAP) as a phosphorus source, which is an exceptionally active electrocatalyst for hydrogen evolution reaction (HER). Density functional theory calculation results reveal that strong electronic redistribution occurs at the heterointerface of Ru-Ru P, which modulates the electronic structure to achieve an optimized hydrogen adsorption strength. The obtained Ru-Ru P possesses excellent HER performance (24 mV at 10 mA cm ) and robust stability (1000 mA cm for 120 h) in alkaline media. Furthermore, an environmentally friendly membrane electrode with a sandwich structure is assembled by HAP nanowires as an alkaline membrane, Ru-Ru P as a cathodic catalyst, and NiFe-LDH as an anodic catalyst, respectively. The voltage of (-) Ru-Ru P || NiFe-LDH/CNTs (+) (1.53 V at 10 mA cm ) is lower than that of (-) 20 wt% Pt/C || RuO (+) (1.60 V at 10 mA cm ) for overall water splitting. Overall, the studies not only design an efficient catalyst but also provide a new route to achieve a high-stability electrolyzer for industrial H production.
碱性膜水电解是一种很有前途的生产技术,先进的电催化剂和膜电极设计一直是核心技术。在此,我们采用离子交换法和环保的原位绿色磷化策略,以羟基磷灰石(HAP)为磷源,成功制备了 Ru-RuP 异质纳米粒子,它是一种用于析氢反应(HER)的异常活泼的电催化剂。密度泛函理论计算结果表明,Ru-RuP 异质界面处发生强烈的电子重新分布,从而调节电子结构以实现优化的氢吸附强度。所获得的 Ru-RuP 在碱性介质中具有出色的 HER 性能(在 10 mA cm 处为 24 mV)和强稳定性(在 1000 mA cm 下 120 h 内稳定)。此外,我们通过 HAP 纳米线作为碱性膜、Ru-RuP 作为阴极催化剂和 NiFe-LDH 作为阳极催化剂,分别组装了具有三明治结构的环保膜电极。(-) Ru-RuP || NiFe-LDH/CNTs (+) 的电压(在 10 mA cm 处为 1.53 V)低于 (-) 20 wt%Pt/C || RuO (+) 的电压(在 10 mA cm 处为 1.60 V),用于整体水分解。总之,本研究不仅设计了高效的催化剂,还为实现用于工业 H 生产的高稳定性电解槽提供了新途径。