High-load Ti3C2 MXene cathode through surface modification for degradable aqueous zinc-ion micro-supercapacitors with excellent energy density and anti-self-discharge

被引:3
作者
Liu, Weifeng [1 ]
Chen, Zhiwen [1 ]
Ma, Zhuang [1 ]
Li, Jitao [1 ]
Liu, Yongqiang [1 ]
Zhang, Yan [1 ]
Feng, Yamin [1 ]
机构
[1] Zhoukou Normal Univ, Coll Phys & Telecommun Engn, Zhoukou 466001, Peoples R China
基金
中国国家自然科学基金;
关键词
Thick electrode; Surface modification; High energy density; Excellent anti-self-discharge; Degradability; ELECTRODE; MICROSUPERCAPACITORS; EFFICIENT;
D O I
10.1016/j.cej.2024.153149
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Micro Zn-ion supercapacitors (MZSCs) with excellent power density and safety are considered the most promising micro-energy storage devices. However, the energy density per unit area of these devices is insufficient to meet the requirements for portable/wearable electronics. Furthermore, traditional energy storage devices produce a large amount of e-waste, causing serious environmental hazards. To solve these problems, degradable MZSCs are proposed based on high-load surface-modified MXene (O-Ti3C2 MXene) cathodes and Zn/carbon nanotube (CNT) anodes. Owing to the advantages of their three-dimensional interconnected microstructures and abundant oxygen-rich functional groups, the thick O-Ti(3)C(2)MXene electrodes show high rate performances and excellent Zn2+ diffusion kinetics. Therefore, MZSCs exhibit an extremely high energy density (384.90 mu Wh cm(-2) at 0.30 mW cm(-2)) and power density (6.0 mW cm(-2) at 126.84 mu Wh cm(-2)) and are degradable. More importantly, because of the strong adsorption capacity of the O-Ti(3)C(2 )MXene cathode for SO(4)(2-)and the redox reaction of Zn/Zn2+ in the Zn/CNT anode, MZSCs have an extremely low self-discharge rate (1.92 mV h(-1)). This research is expected to provide a promising direction for next-generation, high-performance, anti-self-discharge and degradable devices.
引用
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页数:9
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