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Recent Progress on Zinc-Ion Rechargeable Batteries被引量:27
《Nano-Micro Letters》2019年第4期575-604,共30页Wangwang Xu Ying Wang 
the Economic Development Assistantship and the Research Enhancement Awards program sponsored by LaSPACE for financial support.
The increasing demands for environmentally friendly grid-scale electric energy storage devices with high energy density and low cost have stimulated the rapid development of various energy storage systems,due to the e...
关键词:Zinc-ion batteries ELECTROLYTE CATHODE ZINC ANODE Flexible device 
Surface modification of Li_(3)InCl_(6)provides superior electrochemical performance for LiMn_(2)O_(4)cathode materials
《Chinese Chemical Letters》2023年第5期505-508,共4页Yixun Gu Kuan Yang Hongbin Yao Weijian Li Haiqing Zhan Xianquan Ming Guanhan Huang Guiliang Li Feng Zhan 
supported by Guangxi Higher Education Key Laboratory of Advanced Materials;Center of Ecological Collaborative Innovation for Aluminum Industry in Guangxi;CITIC Dameng Mining Industries Limited-Guangxi University Joint Research Institute of Manganese Resources Utilization and Advanced Materials Technology;Guangxi University-CITIC Dameng Mining Industries Limited Joint Base of Postgraduate Cultivation;National Natural Science Foundation of China(No.11364003);Guangxi Innovation Driven Development Project(Nos.AA17204100,AA18118052);the Natural Science Foundation of Guangxi Province(No.2018GXNSFAA138186)。
Li Mn_(2)O_(4)(LMO)is the substance of choice for small and medium-sized energy storage materials in daily life.In this work,Li3InCl6(LIC)is prepared on the surface of LiMn_(2)O_(4)by hydrothermal method using InCl_(3...
关键词:Li-ion batteries Cathode material LiMn_(2)O_(4) Li_(3)InCl_(6) Surface modification 
Zinc–Bromine Rechargeable Batteries:From Device Configuration,Electrochemistry,Material to Performance Evaluation被引量:2
《Nano-Micro Letters》2023年第11期349-384,共36页Norah S.Alghamdi Masud Rana Xiyue Peng Yongxin Huang Jaeho Lee Jingwei Hou Ian R.Gentle Lianzhou Wang Bin Luo 
flnancial support from Australian Research Council through its Discovery,Future Fellowship Programs;Imam Mohammad Ibn Saud Islamic University (IMSIU) in Riyadh,Saudi Arabia,for flnancial support of this work.
Zinc–bromine rechargeable batteries(ZBRBs)are one of the most powerful candidates for next-generation energy storage due to their potentially lower material cost,deep discharge capability,non-flammable electrolytes,r...
关键词:Zinc–bromine rechargeable batteries Cell configurations Electrochemical property Performance metrics Assessment methods 
Revitalizing sodium-ion batteries via controllable microstructures and advanced electrolytes for hard carbon被引量:2
《eScience》2024年第3期65-103,共39页Feng Wang Zhenming Jiang Yanyan Zhang Yanlei Zhang Jidao Li Huibo Wang Yinzhu Jiang Guichuan Xing Hongchao Liu Yuxin Tang 
The authors acknowledge financial supports from the National Key Research and Development Program(2019YFE0111200);the Macao Science and Technology Development Fund,Macao SAR(File No.0035-2019-AMJ).
Sodium-ion batteries(SIBs)with low cost and high safety are considered as an electrochemical energy storage technology suitable for large-scale energy storage.Hard carbon,which is inexpensive and has both high capacit...
关键词:Hard carbon Coulombic efficiency Controllable microstructure Electrolyte regulation Sodium storage mechanism Sodium-ion batteries 
Sulfolane‑Based Flame‑Retardant Electrolyte for High‑Voltage Sodium‑Ion Batteries
《Nano-Micro Letters》2025年第2期498-516,共19页Xuanlong He Jie Peng Qingyun Lin Meng Li Weibin Chen Pei Liu Tao Huang Zhencheng Huang Yuying Liu Jiaojiao Deng Shenghua Ye Xuming Yang Xiangzhong Ren Xiaoping Ouyang Jianhong Liu Biwei Xiao Jiangtao Hu Qianling Zhang 
financial support by National Natural Science Foundation(NNSF)of China(Nos.52202269,52002248,U23B2069,22309162);Shenzhen Science and Technology program(No.20220810155330003);Shenzhen Basic Research Project(No.JCYJ20190808163005631);Xiangjiang Lab(22XJ01007).
Sodium-ion batteries hold great promise as next-generation energy storage systems.However,the high instability of the electrode/electrolyte interphase during cycling has seriously hindered the development of SIBs.In p...
关键词:Sodium-ion batteries Sulfolane-based electrolyte High voltage Layered oxide cathode Flame retardant 
Synthesis and Electrochemical Properties of Carbon-Mixed LiEr_(0.02)Fe_(0.98)PO_4 Cathode Material for Lithium-ion Batteries被引量:4
《Journal of Materials Science & Technology》2011年第9期861-864,共4页Hüseyin Gktepe Halil Sahan Ahmet lgen Saban Patat 
supported by the Research Foundation of Erciyes University FBA-08-440 (Kayseri, Turkey)
LiEr0.02Fe0.98PO4/C composite cathode was synthesized by a simple solution method with polyethylene glycol (PEG) as the reductive agent and carbon source. The effect of erbium doping on the electrochemical behavior ...
关键词:LIFEPO4 CATHODE Erbium doping Lithium batteries 
Promise and challenge of vanadium-based cathodes for aqueous zinc-ion batteries被引量:8
《Journal of Energy Chemistry》2021年第3期655-667,共13页Yaru Zhang Aibing Chen Jie Sun 
supported by the Natural Science Foundation of Tianjin-Science and the Technology Correspondent Project(19YFSLQY00070);the State Key Laboratory of Organic-Inorganic Composites(oic-201901004);the National Natural Science Foundation of China(21676070);Hebei University of Science and Technology(20544401D,20314401D)。
Aqueous zinc-ion batteries(ZIBs)have got wide attention with the increasing demands for energy resource recently.It has a number of merits compared with lithium-ion batteries,such as enhanced safety,low cost and envir...
关键词:Zinc-ion batteries Vanadium-based cathodes Energy storage mechanisms 
High temperature X-ray diffraction study of the formation of Na_(2)Ti_(3)O_(7) from a mixture of sodium carbonate and titanium oxide被引量:1
《Journal of Energy Chemistry》2022年第2期210-218,共9页Caroline Piffet Bénédicte Vertruyen Frédéric Hatert Rudi Cloots Frédéric Boschini Abdelfattah Mahmoud 
supported by the Walloon Region under the “PE PlanMarshall2.vert”program(BATWAL–1318146)。
Na2Ti3O7 has attracted much attention in the field of anode materials for Na-ion batteries thanks to its non-toxicity and very low working potential of 0.3 V vs Na0/Na+.Building a clearer picture of its formation from...
关键词:Formation mechanism High temperature XRD Na_(2)Ti_(3)O_(7) Spray-drying synthesis Na-ion batteries 
High performance of HNaV_(6)O_(16)·4H2_(O) nanobelts for aqueous zinc-ion batteries with in-situ phase transformation by Zn(CF_(3)SO_(3))_(2) electrolyte被引量:6
《Rare Metals》2022年第2期448-456,共9页Chao Guan Fang Hu Xin Yu Hai-Lian Chen Gui-Hong Song Kai Zhu 
This study was financially supported by the National Natural Science Foundation of China(No.51772193);China Postdoctral Science Foundation(No.2019T250254).
Zn(CF_(3)SO_(3))_(2)as an electrolyte has been widely used to improve the electrochemical performance for ZIBs due to that the bulky CF_(3)SO_(3)-can reduce the solvation effect of Zn^(2+)and promote the ionic diffusi...
关键词:HNaV_(6)O_(16)·4H2_(O) Zinc-ion batteries Zn(CF_(3)SO_(3))_(2) ZnSO_(4) ELECTROLYTE 
Novel Gel-like Process for Synthesizing Submicron Li_aNi_(0.8)Co_(0.2)O_2 Powders Used in Lithium Ion Batteries
《Chinese Chemical Letters》2003年第7期755-758,共4页Rong Zhong YUAN Zuo Long YU Mei Zhen QU 
A novel gel-like process has been developed for synthesizing LiaNi0.8Co0.2O2 powders, using citric acid as a chelating agent. This process improves the homogeneity of constituent cation and enhances their reactivity ...
关键词:Lithium ion batteries cathode material LiaNi0.8Co0.2O2 gel-like process. 
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