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典型文献
Design of Flexible Films Based on Kinked Carbon Nanofibers for High Rate and Stable Potassium?Ion Storage
文献摘要:
With the emer-gence of wearable electronics, flexible energy storage materials have been extensively studied in recent years. However, most stud-ies focus on improving the electro-chemical properties, ignoring the flexible mechanism and structure design for flexible electrode mate-rials with high rate capacities and long-time stability. In this study, porous, kinked, and entangled net-work structures are designed for highly flexible fiber films. Based on theoretical analysis and finite element simulation, the bending degree of the porous structure (30% porosity) increased by 192% at the micro-level. An appropriate increase in kinking degree at the meso-level and contact points in entanglement network at the macro-level are beneficial for the flexibility of fiber films. Therefore, a porous and entan-gled network of sulfur-/nitrogen-co-doped kinked carbon nanofibers (S/N-KCNFs) is synthesized. The nanofiber films synthesized from melamine as nitrogen sources and segmented vulcanization exhibited a porous, kinked, and entangled network structure, and the stretching degree increased several times. The flexible S/N-KCNFs anode delivered a higher rate performance of 270 mAh -g?1 at a current density of 2000 mA -g?1 and a higher capacity retention rate of 93.3% after 2000 cycles. Moreover, the foldable pouch cell assembled by potassium-ion hybrid supercapacitor operated safely at large-angle bending and showed long-time stability of 88% capacity retention after 4000 cycles. This study provides a new idea and strategy for the flexible structure design of high-performance potassium-ion storage materials.
文献关键词:
作者姓名:
Qiaotian Xiong;Hongcheng He;Ming Zhang
作者机构:
Key Laboratory for Micro/Nano Optoelectronic Devices of Ministry of Education&Hunan Provincial Key Laboratory of Low?Dimensional Structural Physics&Devices,School of Physics and Electronics,College of Semiconductors(College of Integrated Circuits),Hunan University,Changsha 410082,People's Republic of China;Semiconductor Technology and Application Innovation Institute of Changsha,Changsha 410012,People's Republic of China
引用格式:
[1]Qiaotian Xiong;Hongcheng He;Ming Zhang-.Design of Flexible Films Based on Kinked Carbon Nanofibers for High Rate and Stable Potassium?Ion Storage)[J].纳微快报(英文),2022(03):184-200
A类:
Kinked,kinked,KCNFs
B类:
Design,Flexible,Films,Based,Carbon,Nanofibers,High,Rate,Stable,Potassium,Ion,Storage,With,emer,gence,wearable,electronics,flexible,energy,storage,materials,have,been,extensively,studied,recent,years,However,most,focus,improving,chemical,properties,ignoring,mechanism,electrode,capacities,long,stability,In,this,study,porous,entangled,structures,are,designed,highly,films,theoretical,analysis,finite,element,simulation,bending,degree,porosity,increased,by,micro,level,An,appropriate,kinking,meso,contact,points,entanglement,network,macro,beneficial,flexibility,Therefore,sulfur,nitrogen,doped,carbon,nanofibers,synthesized,from,melamine,sources,segmented,vulcanization,exhibited,stretching,several,times,anode,delivered,higher,performance,mAh,current,density,capacity,retention,after,cycles,Moreover,foldable,pouch,cell,assembled,potassium,hybrid,supercapacitor,operated,safely,large,showed,This,provides,new,idea,strategy
AB值:
0.540877
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