Lian Sen, He Lei, Li Congcong, Ren Junfeng, Bi Lei, Chen Meina, Lin Zijing
School of Physics and Electronics, Shandong Normal University, Jinan, Shandong 250358, People's Republic of China.
School of Resource Environment and Safety Engineering, University of South China, Hengyang, Hunan 421001, People's Republic of China.
J Phys Chem Lett. 2023 Mar 23;14(11):2869-2877. doi: 10.1021/acs.jpclett.2c03333. Epub 2023 Mar 15.
Although the perovskite (Nd,Sr)CoO (NSC)/Ruddlesden-Popper (R-P) oxide (Nd,Sr)CoO (NSC) heterostructure is reported to improve the oxygen reduction reaction (ORR) activity by 2-3 orders of magnitude, the enhancement mechanism remains unclear. For the first time, we conclude that there are two main factors that can enhance the ORR activity: (1) Oxygen adsorbed on such heterostructures would gain more electrons, promoting the oxygen adsorption. (2) The more distant rock-salt layers on the heterointerfaces can facilitate the insertion of interstitial oxygen and form a high-speed transport channel of interstitial oxygen. Moreover, the perovskite/double-layered R-P oxide heterostructure, which has not been reported yet, is predicted to have better ORR performance than the perovskite/single-layered R-P oxide heterostructure. Our work elucidates the ORR enhancement mechanism on perovskite/R-P oxide heterostructures from the atomic level, which is demonstrated by experiments and, thus, is very meaningful for the development of high-performance electrochemical devices.
尽管据报道钙钛矿型(钕,锶)钴氧化物(NSC)/鲁德尔斯登-波珀(R-P)氧化物(NSC)异质结构可将氧还原反应(ORR)活性提高2至3个数量级,但其增强机制仍不清楚。我们首次得出结论,有两个主要因素可提高ORR活性:(1)吸附在这种异质结构上的氧会获得更多电子,促进氧吸附。(2)异质界面上距离更远的岩盐层可促进间隙氧的插入并形成间隙氧的高速传输通道。此外,尚未见报道的钙钛矿/双层R-P氧化物异质结构预计比钙钛矿/单层R-P氧化物异质结构具有更好的ORR性能。我们的工作从原子层面阐明了钙钛矿/R-P氧化物异质结构上的ORR增强机制,这已通过实验得到证实,因此对高性能电化学器件的开发具有重要意义。