纸基柔性电极材料研究进展

周嵬1,2,3, 张云龙1, 崔朝军1*, 李苗苗1, 于兰2,3

化工新型材料 ›› 2020, Vol. 48 ›› Issue (6) : 6 -8.

PDF (1089KB)
化工新型材料 ›› 2020, Vol. 48 ›› Issue (6) : 6-8.
综述与专论

纸基柔性电极材料研究进展

    周嵬1,2,3, 张云龙1, 崔朝军1*, 李苗苗1, 于兰2,3
作者信息 +

Research progress on paper-based flexible electrode material

  • Zhou Wei1,2,3, Zhang Yunlong1, Cui Chaojun1, Li Miaomiao1, Yu Lan2,3
Author information +
文章历史 +
PDF (1114K)

摘要

随着便携式可穿戴电子产品的快速发展,人们对柔性储能器件的需求愈加迫切。超级电容器是一种新型电化学储能器件,具有功率密度高和使用寿命长等特点,因而成为柔性储能器件研发的一个重要方向。近年来,纸由于具有柔韧性和多孔的结构、环境友好等优点,在柔性超级电容器研究方面引起了广泛关注。总结了纸基柔性超级电容器电极材料的相关研究,并对其发展趋势进行了展望。

Abstract

With the rapid development of portable and wearable electronic products,the demand for flexible energy storage devices has become urgent.Supercapacitor is a new type of electrochemical energy storage device with advantages,such as high power density and long cycle life,etc.Supercapacitor has become an important aspect for the development of flexible energy storage devices.In recent years,paper has aroused widespread concern in flexible supercapacitors owing to its flexible,porous structure and environmentally friendliness.The research developments of paper-based flexible supercapacitor electrode materials were reviewed,and also discussed challenges with future perspectives.

关键词

纸基 / 柔性 / 电极材料 / 超级电容器

Key words

paper-basing / flexibility / electrode material / supercapacitor

引用本文

引用格式 ▾
纸基柔性电极材料研究进展[J]. 化工新型材料, 2020, 48(6): 6-8 DOI:

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] Simon P,Gogotsi Y.Materials for electrochemical capacitors[J].Nature Materials,2008,7:845-854.
[2] Tan Y B,Lee J M.Graphene for supercapacitor applications[J].Journal of Materials Chemistry A,2013,1:14814-14843.
[3] 岳瑞瑞,王会才,刘霞平,等.可拉伸超级电容器碳基复合电极材料的研究进展[J].材料导报,2019,33(21):3580-3587.
[4] 杨静,刘艳君.织物基柔性超级电容器电极材料的研究进展[J].棉纺织技术,2017,45(10):79-84.
[5] Chen S,Xing W,Duan J,et al.Nanostructured morphology control for efficient supercapacitor electrodes[J].Journal of Materials Chemistry A,2013,1:2941-2954.
[6] Ko Y,Kwon M,Bae W K,et al.Flexible supercapacitor electrodes based on real metal-like cellulose papers[J].Nature Communications,2017,8:536.
[7] Wang S,Dryfe R A W.Graphene oxide-assisted deposition of carbon nanotubes on carbon cloth as advanced binder-free electrodes for flexible supercapacitors[J].Journal of Materials Chemistry A,2013,1:5279-5283.
[8] 张希,李廷鱼,李朋伟,等.基于TEABF4/PAN-b-PEG-b-PAN柔性超级电容器的性能研究[J].化工新型材料,2019,47(4):89-92.
[9] Cheng Y,Lu S,Zhang H,et al.Synergistic effects from graphene and carbon nanotubes enable flexible and robust electrodes for high-performance supercapacitors[J].Nano Letters,2012,12:4206-4211.
[10] Sumboja A,Foo C Y,Wang X,et al.Large areal mass,flexible and free-standing reduced graphene oxide/manganese dioxide paper for asymmetric supercapacitor device[J].Advanced Materials,2013,25:2809-2815.
[11] Zhang Y Z,Wang Y,Cheng T,et al.Flexible supercapacitors based on paper substrates:a new paradigm for low-cost energy storage[J].Chemical Society Reviews,2015,44:5181-5199.
[12] Guo R,Chen J,Yang B,et al.In-plane micro-supercapacitors for an integrated device on one piece of paper[J].Advanced Functional Materials,2017,27:1702394.
[13] Liu W,Lu C,Li H,et al.Paper-based all-solid-state flexible micro-supercapacitors with ultra-high rate and rapid frequency response capabilities[J].Journal of Materials Chemistry A,2016,4:3754-3764.
[14] Huang H,Chu X,Su H,et al.Massively manufactured paper-based all-solid-state flexible micro-supercapacitors with sprayable MXene conductive inks[J].Journal of Power Sources,2019,415:1-7.
[15] Ma Lina,Liu R,Niu H,et al.Flexible and freestanding electrode based on polypyrrole/graphene/bacterial cellulose paper for supercapacitor[J].Composites Science and Technology,2016,137:87-93.
[16] Li S,Huang D,Yang J,et al.Freestanding bacterial cellulose-polypyrrole nanofibres paper electrodes for advanced energy storage devices[J].Nano Energy,2014,9:309-317.[17] Yao B,Yuan L Y,Xiao X,et al.Paper-based solid-state supercapacitors with pencil-drawing graphite/polyaniline networks hybrid electrodes[J].Nano Energy,2013,2:1071-1078.
[18] Hu L,Choi J W,Yang Y,et al.Highly conductive paper for energy-storage devices[J].Proceedings of the National Academy of Sciences USA,2009,106:21490-21494.
[19] Hu L B,Wu H,Cui Y.Printed energy storage devices by integration of electrodes and separators into single sheets of paper[J].Applied Physics Letters,2010,96:183502.
[20] Lin C W,Zhao Z,Kim J.Pencil drawn strain gauges and chemiresistors on paper[J].Scientific Reports,2014,4:3812.
[21] Zheng G Y,Hu L B,Wu H,et al.Paper supercapacitors by a solvent-free drawing method[J].Energy & Environmental Science,2011,4:3368-3373.
[22] Feng J X,Ye S H,Wang A L,et al.Flexible cellulose paper-based asymmetrical thin film supercapacitors with high-performance for electrochemical energy storage[J].Advanced Functional Materials,2014,24:7093.
[23] Snooka G A,Kao P,Best A S.Conducting-polymer-based supercapacitor devices and electrodes[J].Journal of Power Sources,2011,196:1-12.
[24] Song Y,Liu T Y,Xu X X,et al.Pushing the cycling stability limit of polypyrrole for supercapacitors[J].Advanced Functional Materials,2015,25:4626-4632.
[25] Yuan L,Yao B,Hu B,et al.Polypyrrole-coated paper for flexible solid-state energy[J].Energy & Environmental Science,2013,6:470-476.
[26] Razaq A,Nyholm L,Sjödin M,et al.Paper-based energy-storage devices comprising carbon fiber-reinforced polypyrrole-cladophora nanocellulose composite electrodes[J].Advanced Energy Materials,2012,2:445-454.
[27] Weng Z,Su Y,Wang D.W,et al.Graphene-cellulose paper flexible supercapacitors[J].Advanced Energy Materials,2011,1(5):917-922.
[28] Wang X,Sumboja A,Foo W L,et al.Rational design of a high performance all solid state flexible micro-supercapacitor on paper[J].RSC Advances,2013,3:15827-15833.

基金资助

安阳工学院博士科研启动基金(BSJ2018018);吉林省教育厅科学技术研究项目(2016-307)

AI Summary AI Mindmap
PDF (1089KB)

906

访问

0

被引

导航
相关文章

AI思维导图

/