假电容
材料科学
阴极
阳极
水溶液
插层(化学)
化学工程
锰
电容器
无机化学
储能
二氧化碳
钛酸酯
电化学
纳米线
电池(电)
聚合物电容器
纳米技术
作者
Shibo Chai,Chenyang Chen,Peng Gong,Jiale Xia,Yuanyuan Li,Jinping Liu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-04-01
卷期号:26 (14): 4797-4806
标识
DOI:10.1021/acs.nanolett.6c00497
摘要
The energy density of aqueous lithium-ion hybrid capacitors (ALIHCs) is generally constrained by the lack of suitable low-potential anodes and the kinetic/capacity mismatch between two electrodes. Here we report a unique high-voltage ALIHC made by pairing a layered sodium titanate intercalation anode with a pseudocapacitive manganese dioxide cathode. The oxygen-deficient titanate nanowire anode features a stable, conductive Ti–O framework with large interlayer spacing, enabling intensive, reversible Li + storage at low potentials (−1.4 to −0.8 V vs saturated calomel electrode) with fast intercalation kinetics. Besides, in situ electrodeposition of manganese dioxide nanosheets onto single-walled carbon nanotubes creates a binder-free cathode with high pseudocapacitance to couple with anode. The resulting ALIHC device achieves an ultrahigh voltage of 2.5 V and delivers remarkable energy and power densities (maximum: 70.74 Wh kg –1 and 11,500 W kg –1 ) even at high total mass loading of 12.1 mg cm –2, surpassing previously reported ALIHCs and even some typical aqueous Li-ion batteries.
科研通智能强力驱动
Strongly Powered by AbleSci AI