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典型文献
N/S codoping modification based on the metal organic framework-derived carbon to improve the electrochemical performance of different energy storage devices
文献摘要:
Carbon-based materials have become a research hotspot in the field of energy storage devices in recent years due to their abundant resources,low cost,and environmental friendliness.However,the low capacity and poor high rate performance still constitute great challenges.Metal organic framework-derived carbon has been widely researched because of its high porosity,tunable structure,and good conductivity.In this work,N/S codoped hierarchical porous carbon microspheres were prepared by a high-temperature heat treatment and atomic doping process using a zinc-based organic framework as the precursor.When used as a potassium-ion battery anode,it has a high reversible specific capacity(435.7 mAh g-1),good rate per-formance(133.5 mAh g-1 at 10,000 mA g-1),and long-term cycling stability(73.2%capacity retention after the 2500th cycle).The potassium storage mechanism of the derived carbon was explained by various elec-trochemical analysis methods and microstructure characterization techniques,and the relationship between the structural characteristics and electrochemical properties was researched.In a supercapacitor,the porous carbon material exhibits a specific capacitance of307.2 Fg-1 at a current density of 0.2 Ag-1 in a KOH aqueous solution and achieves a retention rate of 99.88%after 10,000 cycles.The assembled symmet-ric supercapacitor device delivers a high energy density of 6.69 Wh kg-1,with a corresponding power den-sity of2500 W kg-1.In addition,density functional theory calculations further confirmed that N/S codoping can improve the adsorption capacities of potassium and hydroxyl ions in the derived carbon.
文献关键词:
作者姓名:
Ziyi Zhu;Xue Li;Zhong Zhang;Qi Meng;Wenjia Zhang;Peng Dong;Yingjie Zhang
作者机构:
National and Local Joint Engineering Laboratory for Lithium-ion Batteries and Materials Fabrication Technology,Yunnan Provincial Laboratory for Advanced Materials and Batteries Application,Kunming University of Science and Technology,Kunming 650093,Yunnan,China;Faculty of Metallurgical and Energy Engineering,Kunming University of Science and Technology,Kunming 650093,Yunnan,China;School of Applied Sciences and Engineering,Fuzhou Institute of Technology,Fuzhou 350118,Fujian,China
文献出处:
引用格式:
[1]Ziyi Zhu;Xue Li;Zhong Zhang;Qi Meng;Wenjia Zhang;Peng Dong;Yingjie Zhang-.N/S codoping modification based on the metal organic framework-derived carbon to improve the electrochemical performance of different energy storage devices)[J].能源化学,2022(11):394-403
A类:
codoping,2500th,of307,of2500
B类:
modification,metal,organic,framework,derived,carbon,improve,electrochemical,performance,different,energy,storage,devices,Carbon,materials,have,become,hotspot,field,recent,years,due,their,abundant,resources,low,cost,environmental,friendliness,However,capacity,poor,high,rate,still,constitute,great,challenges,Metal,has,been,widely,researched,because,porosity,tunable,good,conductivity,In,this,codoped,hierarchical,porous,microspheres,were,prepared,by,temperature,heat,treatment,atomic,process,using,zinc,precursor,When,used,potassium,battery,anode,reversible,specific,mAh,long,term,cycling,stability,retention,after,mechanism,was,explained,various,analysis,methods,microstructure,characterization,techniques,relationship,between,structural,characteristics,properties,supercapacitor,exhibits,capacitance,Fg,current,density,Ag,KOH,aqueous,solution,achieves,cycles,assembled,symmet,ric,delivers,corresponding,power,addition,functional,theory,calculations,further,confirmed,that,can,adsorption,capacities,hydroxyl
AB值:
0.563679
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