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[会议论文] 作者:Guanhua Zhang,Huigao Duan,Bingan Lu, 来源:International Conference on Nanoscience & Technology,China 2 年份:2013
In order to fulfil the future requirements of electrochemical energy storage, such as high energy density at high power demands, heterogeneous nanostructured materials are currently studied as promisi...
[期刊论文] 作者:Junmin Ge,Xianhui Yi,Ling Fan,Bingan Lu, 来源:能源化学:英文版 年份:2021
Benefiting from the environmental friendliness of organic electrodes and the high security of aqueous electrolyte,an all-organic aqueous potassium dual-ion full battery(APDIB) was assembled with 21 M potassium bis(fluoroslufonyl)imide(KFSI)......
[期刊论文] 作者:Na Cheng,Patrick Xu,Bingan Lu,Zhigang Liu, 来源:能源化学 年份:2021
The potassium bis(fluoro-sulfonyl)imide(KFSI)-based electrolyte has great application prospects in potas-sium ion batteries(PIBs).However,their development has been limited by the decomposition of elec-trolytes and the corrosion of Al foils......
[期刊论文] 作者:Hongbo Ding,Jiang Zhou,Apparao M.Rao,Bingan Lu, 来源:国家科学评论(英文版) 年份:2021
Large-scale low-cost synthesis methods for potassium ion battery (PIB) anodes with long cycle life and high capacity have remained challenging.Here,inspired by the structure of a biological cell,biomimetic carbon cells (BCCs) were synthesiz......
[期刊论文] 作者:Yanhong Feng,Suhua Chen,Jue Wang,Bingan Lu, 来源:能源化学 年份:2020
A novel carbon foam with micropomus structure (CFMS),with the advantages of a simple fabrication process,low energy consumption,large specific surface area and high conductivity,has been prepared by a facile one-step carbonization.In additi......
[期刊论文] 作者:Jiawei Gao,Xuesong Xie,Shuquan Liang,Bingan Lu,Jiang Zhou, 来源:纳微快报(英文) 年份:2021
Zinc-ion batter-ies (ZIBs) is a promising electrical energy storage candidate due to its eco-friendliness, low cost, and intrin-sic safety, but on the cathode t...
[期刊论文] 作者:Xianhui Yi,Junmin Ge,Jiawan Zhou,Jiang Zhou,Bingan Lu, 来源:中国科学:化学(英文版) 年份:2021
As the key to optimizing potassium ion batteries'(PIBs)performance,the development of high capacity potassium anode is the footstone.Here,through a one-step sol...
[期刊论文] 作者:Hua Tan,Xin Zhi Yu,Kai Huang,Jianxin Zhong,Bingan Lu, 来源:能源化学 年份:2020
To search for new cathode materials with high energy density of Lithium-ion batteries(LIBs)is one of the most challenging issues.Vanadium pentoxide(V2O5)with hi...
[期刊论文] 作者:Yaya Wang,Zexu Zhao,Wei Zeng,Xingbo Liu,Lei Wang,Jian Zhu,Bingan Lu, 来源:能源化学 年份:2021
Lithium metal is one of the most promising anode materials for next-generation electrochemical energy storage due to low electrochemical potential and high spec...
[期刊论文] 作者:Bin Li,Xiaotan Zhang,Tingting Wang,Zhangxing He,Bingan Lu,Shuquan Liang,Jiang Zhou, 来源:纳微快报(英文版) 年份:2022
Due to their high safety and low cost,rechargeable aqueous Zn-ion batteries (RAZIBs) have been receiving increased attention and are expected to be the next generation of energy storage systems.However,metal Zn anodes exhibit a limited-serv......
[期刊论文] 作者:Xiaodong Shi,Zhenming Xu,Cheng Han,Runze Shi,Xianwen Wu,Bingan Lu,Jiang Zhou,Shuquan Liang, 来源:纳微快报(英文) 年份:2021
Potassium-ion batteries (KIBs) have great potential for applications in large-scale energy storage devices. However, the larger radius of K+ leads to sluggish k...
[期刊论文] 作者:Renming Deng,Bingyuan Ke,Yonghui Xie,Shoulin Cheng,Congcong Zhang,Hong Zhang,Bingan Lu,Xinghui Wang, 来源:Nano-Micro Letters 年份:2023
Lithium-sulfur(Li–S) system coupled with thin-film solid electrolyte as a novel high-energy micro-battery has enormous potential for complementing embedded energy harvesters to enable the autonomy of...
[期刊论文] 作者:Xuemei Ma,Xinxin Cao,Yifan Zhou,Shan Guo,Xiaodong Shi,Guozhao Fang,Anqiang Pan,Bingan Lu,Jiang Zhou,Shuquan, 来源:纳米研究(英文版) 年份:2020
Sodium superionic conductor(NASICON)-type compounds have been regarded as promising cathodes for sodium-ion batteries(SIBs)due to their favorable ionic conducti...
[期刊论文] 作者:Lei Wang,Lele Peng,Shubin Fu,Meng Zhang,Jinhui Cao,Xiang Xu,Junfei Liang,Huilong Fei,Xidong Duan,Bingan Lu, 来源:纳微快报(英文版) 年份:2022
Silicon monoxide (SiO) is an attractive anode material for next-generation lithium-ion batteries for its ultra-high theoreti-cal capacity of 2680 mAh -g?1. The studies to date have been limited to electrodes with a rela-tively low mass load......
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