Xu Xiaohu, Guo Kaiwei, Yu Xinyue
College of Physics and Information Engineering, Shanxi Normal University, No. 339 Taiyu Road, Xiaodian District, Taiyuan 030031, China.
Molecules. 2024 Mar 18;29(6):1342. doi: 10.3390/molecules29061342.
Recently, perovskite (ABO) nanomaterials have been widely explored as a class of versatile electrocatalysts for oxygen evolution reactions (OER) due to their remarkable compositional flexibility and structural tunability, but their poor electrical conductivity hinders hydrogen evolution reaction (HER) activity and further limits the large-scale application of perovskite oxide in overall water splitting (OWS). In this study, hollow-nanotube-structure LaCoFeO (x = 1.0, 0.9, and 0.8) perovskites with superior HER/OER activity were synthesized on nickel-iron alloy foam (denoted LaCoFe/NFF) using hydrothermal with a subsequent calcination strategy. Among them, LaCoFe/NFF not only exhibited extraordinary HER electrocatalytic performance (160.5 mV@10 mA cm and 241.0 mV@100 mA cm) and stability (20 h@10 mA cm), but also displayed significant OER electrocatalytic activity (234.7 mV@10 mA cm and 296.1 mV@100 mA cm) and durability (20 h@10 mA cm), outperforming many recently reported HER/OER perovskite catalysts. The increase in oxygen vacancies caused by the introduction of La deficiency leads to the expansion of the lattice, which greatly accelerates the HER/OER process of LaCoFe/NFF. Additionally, the naturally porous skeleton can prevent catalysts from aggregating as well as delay the corrosion and dissolution of catalysts in the electrolyte under high applied potentials. Furthermore, the assembled two-electrode configuration, utilizing LaCoFe/NFF (cathode and anode) electrodes, only requires a low cell voltage of 1.573 V at 10 mA cm for robust alkaline OWS, accompanied by remarkable durability over 20 h. This work provides inspiration for the design and preparation of high-performance and stable bifunctional perovskite electrocatalysts for OWS.
近年来,钙钛矿(ABO)纳米材料因其显著的成分灵活性和结构可调性,作为一类用于析氧反应(OER)的多功能电催化剂受到广泛研究。然而,其较差的导电性阻碍了析氢反应(HER)活性,进一步限制了钙钛矿氧化物在全水解(OWS)中的大规模应用。在本研究中,采用水热法并结合后续煅烧策略,在镍铁合金泡沫(记为LaCoFe/NFF)上合成了具有优异HER/OER活性的中空纳米管结构LaCoFeO(x = 1.0、0.9和0.8)钙钛矿。其中,LaCoFe/NFF不仅表现出非凡的HER电催化性能(在10 mA cm时为160.5 mV,在100 mA cm时为241.0 mV)和稳定性(在10 mA cm时为20 h),还展现出显著的OER电催化活性(在10 mA cm时为234.7 mV,在100 mA cm时为296.1 mV)和耐久性(在10 mA cm时为20 h),优于许多最近报道的HER/OER钙钛矿催化剂。La缺乏引入导致的氧空位增加致使晶格膨胀,极大地加速了LaCoFe/NFF的HER/OER过程。此外,天然多孔骨架可防止催化剂聚集,并在高外加电位下延缓催化剂在电解质中的腐蚀和溶解。再者,利用LaCoFe/NFF(阴极和阳极)电极组装的双电极配置,在10 mA cm的电流密度下进行稳健的碱性OWS时仅需1.573 V的低电池电压,且具有超过20 h的显著耐久性。这项工作为设计和制备用于OWS的高性能、稳定的双功能钙钛矿电催化剂提供了灵感。