电催化剂
催化作用
氧化还原
材料科学
尿素
化学工程
氧化物
电池(电)
X射线光电子能谱
钙钛矿(结构)
动力学
空位缺陷
电极
无机化学
电化学
化学
冶金
物理化学
功率(物理)
结晶学
工程类
物理
有机化学
量子力学
生物化学
作者
Kaikai Luo,Qilong Zheng,Yi Yu,Chunchang Wang,Shanshan Jiang,Haijuan Zhang,Yu Liu,Youmin Guo
出处
期刊:Batteries
[Multidisciplinary Digital Publishing Institute]
日期:2023-01-29
卷期号:9 (2): 90-90
被引量:11
标识
DOI:10.3390/batteries9020090
摘要
Precious metal-based materials such as commercial Pt/C are available electrocatalysts for redox reactions in Zn-air batteries. However, their commercial use is still limited by slow kinetics and restricted stability. In this work, we highlight a facial urea-assisted sol-gel method to synthesize A-site vacancy in LaMnO3+δ oxide for boosting its catalytic activity and further explore the effect of the amount of urea on the A-site LaMnO3. The A-site vacancy in LMO was confirmed by XRD, TEM, and XPS, which revealed that the urea-assisted sol-gel method mitigated the A-site vacancy in LaMnO3+δ and increased its surface area, thus ultimately accelerating its redox reaction kinetics. The half-wave potential and current density of the resultant 3.0U-LMO electrocatalyst were 0.74 V and 5.74 mA cm−2, respectively. It is worth noting that the assembled Zn-air battery with the 3.0U-LMO catalyst presented a power output of 130.04 mW cm−2 at 0.51 V and a promising energy efficiency of 58.4% after 150 cycles. This protocol might offer an efficient approach for developing new defect-regulated perovskites for electrocatalysis.
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