Zhao Yilin, Chen Hsiao-Chien, Ma Xuelu, Li Jiaye, Yuan Qing, Zhang Peng, Wang Minmin, Li Junxi, Li Min, Wang Shifu, Guo Han, Hu Ruanbo, Tu Kun-Hua, Zhu Wei, Li Xuning, Yang Xuan, Pan Yuan
State Key Laboratory of Heavy Oil Processing, China University of Petroleum (East China), Qingdao, 266580, P. R. China.
Center for Reliability Science and Technologies, Center for Sustainability and Energy Tecnhologies, Chang Gung University, Taoyuan, 33302, Taiwan.
Adv Mater. 2024 Mar;36(11):e2308243. doi: 10.1002/adma.202308243. Epub 2023 Dec 24.
The development of facile, efficient synthesis method to construct low-cost and high-performance single-atom catalysts (SACs) for oxygen reduction reaction (ORR) is extremely important, yet still challenging. Herein, an atomically dispersed N, S co-doped carbon with abundant vacancy defects (NSC-vd) anchored Fe single atoms (SAs) is reported and a vacancy defects inductive effect is proposed for promoting electrocatalytic ORR. The optimized catalyst featured of stable Fe─N S active sites exhibits excellent ORR activity with high turnover frequency and mass activity. In situ Raman, attenuated total reflectance surface enhanced infrared absorption spectroscopy reveal the Fe─N S active sites exhibit different kinetic mechanisms in acidic and alkaline solutions. Operando X-ray absorption spectra reveal the ORR activity of Fe SAs/NSC-vd catalyst in different electrolyte is closely related to the coordination structure. Theoretical calculation reveals the upshifted d band center of Fe─N S active sites facilitates the adsorption of O and accelerates the kinetics process of OH reduction. The abundant vacancy defects around the Fe─N S active sites balance the OOH formation and *OH reduction, thus synergetically promoting the electrocatalytic ORR process.
开发简便、高效的合成方法以构建用于氧还原反应(ORR)的低成本、高性能单原子催化剂(SAC)极为重要,但仍具有挑战性。在此,报道了一种锚定有铁单原子(SAs)的具有丰富空位缺陷的原子分散的N、S共掺杂碳(NSC-vd),并提出了空位缺陷诱导效应以促进电催化ORR。具有稳定的Fe─N S活性位点的优化催化剂表现出优异的ORR活性,具有高周转频率和质量活性。原位拉曼光谱、衰减全反射表面增强红外吸收光谱表明,Fe─N S活性位点在酸性和碱性溶液中表现出不同的动力学机制。原位X射线吸收光谱表明,Fe SAs/NSC-vd催化剂在不同电解质中的ORR活性与配位结构密切相关。理论计算表明,Fe─N S活性位点的d带中心上移有利于O的吸附并加速OH还原的动力学过程。Fe─N S活性位点周围丰富的空位缺陷平衡了OOH的形成和*OH的还原,从而协同促进电催化ORR过程。