Cao Yang, Liang Jie, Li Xue, Yue Luchao, Liu Qian, Lu Siyu, Asiri Abdullah M, Hu Jianming, Luo Yonglan, Sun Xuping
School of Physics and Electrical Engineering, Chongqing Normal University, Chongqing 401331, China.
Chem Commun (Camb). 2021 Mar 7;57(19):2343-2355. doi: 10.1039/d0cc07970g. Epub 2021 Feb 17.
Owing to the high power density and ultralong cycle life, supercapacitors represent an alternative to electrochemical batteries in energy storage applications. However, the relatively low energy density is the main challenge for supercapacitors in the current drive to push the entire technology forward to meet the benchmark requirements for commercialization. To effectively solve this issue, it is crucial to develop electrode materials with excellent electrochemical performance since the electrode used is closely related to the specific capacitance and energy density of supercapacitors. With the unique structure, compositional flexibility, and inherent oxygen vacancy, perovskite oxides have attracted wide attention as promising electrode materials for supercapacitors. In this review, we summarize the recent advances in perovskite oxides as electrode materials for supercapacitors. Firstly, the structures and compositions of perovskite oxides are critically reviewed. Following this, the progress in various perovskite oxides, including single perovskite and derivative perovskite oxides, is depicted, focusing on their electrochemical performance. Furthermore, several optimization strategies (i.e., modulating the stoichiometry of the anion or cation, A-site doping, B-site doping, and constructing composites) to improve their electrochemical performance are also discussed. Finally, the significant challenges facing the advancement of perovskite oxide electrodes for supercapacitor applications and future outlook are proposed.
由于具有高功率密度和超长循环寿命,超级电容器在储能应用中是电化学电池的一种替代选择。然而,相对较低的能量密度是当前推动整个超级电容器技术向前发展以满足商业化基准要求的主要挑战。为有效解决这一问题,开发具有优异电化学性能的电极材料至关重要,因为所使用的电极与超级电容器的比电容和能量密度密切相关。具有独特结构、成分灵活性和固有氧空位的钙钛矿氧化物作为超级电容器有前景的电极材料已引起广泛关注。在本综述中,我们总结了钙钛矿氧化物作为超级电容器电极材料的最新进展。首先,对钙钛矿氧化物的结构和组成进行了批判性综述。在此之后,描述了各种钙钛矿氧化物的进展,包括单一钙钛矿和衍生钙钛矿氧化物,重点是它们的电化学性能。此外,还讨论了几种改善其电化学性能的优化策略(即调节阴离子或阳离子的化学计量、A位掺杂、B位掺杂和构建复合材料)。最后,提出了钙钛矿氧化物电极在超级电容器应用方面所面临的重大挑战以及未来展望。