Sun Jiuyi, Qin Yue, Niu Xiaopo, Zhao Rong, Xu Zhihong, Liu Danni, Zhao Wenli, Guo Lili, Jiang Nan, Liu Chang, Zhang Kaige, Zhang Junfeng, Wang Qingfa
Key Laboratory for Green Chemical Technology of the Ministry of Education, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.
Key Laboratory of Engines, School of Mechanical Engineering, Tianjin University, Tianjin, 300072, China.
J Colloid Interface Sci. 2024 May;661:249-258. doi: 10.1016/j.jcis.2024.01.151. Epub 2024 Jan 25.
Exploring the electrocatalysts with high intrinsic activity and stability for both anode and cathode to tolerate the extremely acidic condition in proton exchange membrane water electrolyzer (PEMWE) is crucial for widespread industrial application. Herein, we constructed the bifunctional IrCo nanoalloys with abundant metal vacancies via the combination of chemical reduction and electrochemical treatment for overall water splitting. The developed IrCo exhibits ultra-low overpotentials of 238 mV for OER and 18.6 mV for HER at 10 mA cm in 0.1 M HClO, and achieves the exceptional stability of 1000 h for OER and 100 h for HER at 10 mA cm. Further, the cell voltage is only 1.68 V to reach a high current density of 1 A cm in PEMWE with IrCo as the both cathode and anode catalytic layer, and it shows excellent corrosion resistance in acidic environment, evidenced by 415 h stable operation at 1 A cm. The strong electronic interactions in the Ir-Co atomic heterostructure and the in-situ generation of Co vacancies by electrochemical oxidation synergistically contribute to the enhanced activity and stability via optimizing the electronic structure of adjacent Ir active sites, enhancing the conductivity and electrochemical active surface area of the catalyst, accelerating charge transfer and kinetics. This work provides a new perspective for designing bifunctional catalysts for practical application in PEMWE.
探索具有高本征活性和稳定性的阳极和阴极电催化剂,以耐受质子交换膜水电解槽(PEMWE)中的极端酸性条件,对于广泛的工业应用至关重要。在此,我们通过化学还原和电化学处理相结合的方法构建了具有丰富金属空位的双功能IrCo纳米合金用于全水分裂。所制备的IrCo在0.1 M HClO中,在10 mA cm时,OER的过电位超低,为238 mV,HER的过电位为18.6 mV,并且在10 mA cm时,OER实现了1000 h的优异稳定性,HER实现了100 h的优异稳定性。此外,在以IrCo作为阴极和阳极催化层的PEMWE中,电池电压仅为1.68 V即可达到1 A cm的高电流密度,并且在酸性环境中表现出优异的耐腐蚀性,在1 A cm下稳定运行415 h即可证明。Ir-Co原子异质结构中的强电子相互作用以及通过电化学氧化原位生成的Co空位,通过优化相邻Ir活性位点的电子结构、提高催化剂的电导率和电化学活性表面积、加速电荷转移和动力学,协同促进了活性和稳定性的提高。这项工作为设计用于PEMWE实际应用的双功能催化剂提供了新的视角。