首站-论文投稿智能助手
典型文献
Iodine Promoted Ultralow Zn Nucleation Overpotential and Zn-Rich Cathode for Low-Cost,Fast-Production and High-Energy Density Anode-Free Zn-Iodine Batteries
文献摘要:
The anode-free design is a promising strategy to increase the energy density of aqueous Zn metal batteries(AZMBs).However,the scar-city of Zn-rich cathodes and the rapid loss of limited Zn greatly hinder their commercial applications.To address these issues,a novel anode-free Zn-iodine battery(AFZIB)was designed via a simple,low-cost and scalable approach.Iodine plays bifunctional roles in improving the AFZIB overall performance:enabling high-performance Zn-rich cathode and modulating Zn deposition behavior.On the cathode side,the ZnI2 serves as Zn-rich cathode material.The graphene/polyvinyl pyrrolidone heterostructure was employed as an efficient host for ZnI2 to enhance electron conductivity and suppress the shuttle effect of iodine species.On the anode side,trace 13 additive in the electrolyte creates surface reconstruction on the commercial Cu foil.The in situ formed zincophilic Cu nanocluster allows ultralow-overpotential and uniform Zn deposition and superior reversibility(average coulombic efficiency>99.91%over 7,000 cycles).Based on such a configuration,AFZIB exhibits significantly increased energy density(162 Wh kg-1)and durable cycle stability(63.8%capacity retention after 200 cycles)under practical application conditions.Considering the low cost and simple preparation methods of the electrode materials,this work paves the way for the practical application of AZMBs.
文献关键词:
作者姓名:
Yixiang Zhang;Lequan Wang;Qingyun Li;Bo Hu;Junming Kang;Yuhuan Meng;Zedong Zhao;Hongbin Lu
作者机构:
State Key Laboratory of Molecular Engineering of Polymers,Department of Macromolecular Science,Fudan University,2005 Songhu Road,Shanghai 200438,People's Republic of China;Yiwu Research Institute of Fudan University,Chengbei Road,Yiwu City,Zhejiang 322000,People's Republic of China
引用格式:
[1]Yixiang Zhang;Lequan Wang;Qingyun Li;Bo Hu;Junming Kang;Yuhuan Meng;Zedong Zhao;Hongbin Lu-.Iodine Promoted Ultralow Zn Nucleation Overpotential and Zn-Rich Cathode for Low-Cost,Fast-Production and High-Energy Density Anode-Free Zn-Iodine Batteries)[J].纳微快报(英文),2022(12):373-386
A类:
Overpotential,AZMBs,AFZIB,zincophilic
B类:
Iodine,Promoted,Ultralow,Nucleation,Rich,Cathode,Low,Cost,Fast,Production,High,Energy,Density,Anode,Free,Batteries,anode,free,promising,strategy,energy,density,aqueous,metal,batteries,However,scar,rich,cathodes,rapid,loss,limited,greatly,hinder,their,commercial,applications,To,address,these,issues,novel,iodine,battery,was,designed,via,simple,cost,scalable,approach,plays,bifunctional,roles,improving,overall,performance,enabling,high,modulating,deposition,behavior,On,ZnI2,serves,graphene,polyvinyl,pyrrolidone,heterostructure,employed,efficient,host,enhance,electron,conductivity,suppress,shuttle,effect,species,trace,additive,electrolyte,creates,surface,reconstruction,foil,situ,formed,nanocluster,allows,ultralow,overpotential,uniform,superior,reversibility,average,coulombic,efficiency,cycles,Based,such,configuration,exhibits,significantly,increased,Wh,durable,stability,capacity,retention,after,under,practical,conditions,Considering,preparation,methods,electrode,materials,this,work,paves,way
AB值:
0.622856
相似文献
Yolk-Shell P3-Type K0.5[Mn0.85Ni0.1Co0.05]O2:A Low-Cost Cathode for Potassium-Ion Batteries
Jiaxin Hao;Ke Xiong;Jiang Zhou;Apparao M.Rao;Xianyou Wang;Huan Liu;Bingan Lu-School of Physics and Electronics,State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body,Hunan University,Changsha 410082,China;Key Laboratory of Environmentally Friendly Chemistry and Applications of Ministry of Education,Hunan Province Key Laboratory of Electrochemical Energy Storage and Conversion,School of Chemistry,Xiangtan University,Xiangtan 411105,China;School of Materials Science and Engineering,Central South University,Changsha 410083,China;Department of Physics and Astronomy,Clemson Nanomaterials Institute,Clemson University,Clemson SC 29634,USA;College of Materials Science and Engineering,Hunan University of Science and Technology,Xiangtan 411201,China;Fujian Strait Research Institute of Industrial Graphene Technologies,Quanzhou 362000,China
Bimetallic Metal-Organic Framework with High-Adsorption Capacity toward Lithium Polysulfides for Lithium-sulfur Batteries
Pengbiao Geng;Meng Du;Xiaotian Guo;Huan Pang;Ziqi Tian;Pierre Braunstein;Qiang Xu-School of Chemistry and Chemical Engineering,Yangzhou University,Yangzhou 225009,China;Ningbo Institute of Materials Technology and Engineering,Chinese Academy of Sciences,Ningbo 315201,China;Laboratoire de Chimie de Coordination,CNRS,CHIMIE,UMR 7177,Université de Strasbourg,Strasbourg Cedex 67081,France;Department of Materials Science and Engineering and SUSTech Academy for Advanced Interdisciplinary Studies,Southern University of Science and Technology(SUSTech),Xueyuan Ave,Nanshan,Shenzhen 518055,China;Institute for Integrated Cell-Material Sciences(iCeMS),Kyoto University,Kyoto 606-8501,Japan
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。