Understanding of the charge storage mechanism of MnO2-based aqueous zinc-ion batteries: Reaction processes and regulation strategies

N Zhang, YR Ji, JC Wang, PF Wang, YR Zhu… - Journal of Energy …, 2023 - Elsevier
Though secondary aqueous Zn ion batteries (AZIBs) have been received broad concern in
recent years, the development of suitable cathode materials of AZIBs is still a big challenge …

Electrochemical sensing fibers for wearable health monitoring devices

H Tian, J Ma, Y Li, X Xiao, M Zhang, H Wang… - Biosensors and …, 2023 - Elsevier
Real-time monitoring of health conditions is an emerging strong issue in health care, internet
information, and other strongly evolving areas. Wearable electronics are versatile platforms …

All-functionalized-graphene ribbon films for flexible asymmetric supercapacitors with ultrahigh energy and power densities

Q Miao, K Wu, L Sheng, H Shi, L Jiang, L Le… - Chemical Engineering …, 2024 - Elsevier
Abstract Asymmetric (hybrid) supercapacitors (ASCs) based on different positive and
negative pseudocapacitance materials can deliver more energy density than electric double …

Progress on carbonene-based materials for Zn-ion hybrid supercapacitors

Y Zhou, J Luo, Y Shao, Z Xia, Y Shao - New Carbon Materials, 2022 - Elsevier
Along with the emergence of wearable electronic devices, green energy devices like Zn-ion
hybrid supercapacitors (ZHSCs), which are extremely safe and cheap, and have excellent …

Composites of Intrinsically Conducting Polymers with Carbonaceous Materials for Supercapacitors–An Update

R Holze - Universal Journal of Electrochemistry, 2023 - ojs.wiserpub.com
Supercapacitors are an important component in the electric energy landscape with rapidly
growing importance. Their energy density still does not meet growing expectations. For …

[HTML][HTML] 烯碳材料用于锌离子混合电容器的研究进展

Z Yi-jing, LUO Jin-rong, S Yan-yan, XIA Zhou… - 新型炭材料, 2022 - xxtcl.sxicc.ac.cn
随着可穿戴电子设备的出现, 诸如锌离子混合电容器等绿色储能器件, 因其具有安全性高,
稳定性好, 成本低, 功率密度高, 能量密度大的特点, 从而受到了广泛的关注 …

水的气-液相转变获取电能研究进展

邵长香, 曲良体 - 物理化学学报, 2023 - whxb.pku.edu.cn
气态水和液态水自发相变过程中蕴含巨大能量, 可通过新兴的湿气产电和蒸发产电两种水伏技术
进行收集. 湿气产电和蒸发产电具有来源广泛, 高度自发, 性能优异, 绿色环保等优点 …