导电聚合物水凝胶在电极材料中的应用研究进展

刘振兴, 李巧玲*, 李延斌, 唐风娣, 郝莉, 顾伟

化工新型材料 ›› 2022, Vol. 50 ›› Issue (9) : 12 -15.

PDF
化工新型材料 ›› 2022, Vol. 50 ›› Issue (9) : 12-15. DOI: 10.19817/j.cnki.issn1006-3536.2022.09.003
综述与专论

导电聚合物水凝胶在电极材料中的应用研究进展

    刘振兴, 李巧玲*, 李延斌, 唐风娣, 郝莉, 顾伟
作者信息 +

Research progress on the application of conductive polymer hydrogel in electrode material

  • Liu Zhenxing, Li Qiaoling, Li Yanbin, Tang Fengdi, Hao Li, Gu Wei
Author information +
文章历史 +
PDF

摘要

导电聚合物水凝胶作为电极或电极涂层是当前的研究热点之一。简要介绍了导电聚合物的合成原理以及导电聚合物水凝胶的3种制备路线,概述了聚吡咯、聚(3,4-乙基二氧噻吩)及其衍生物、聚苯胺水凝胶在超级电容器电极、电池电极以及生物医用电极领域的应用进展。

Abstract

Conducting polymer hydrogels as electrode or electrode coating is one of the current research hotspots.The synthesis principles of the hydrogels were described,and presented three preparation routes of the hydrogels.For polypyrrole hydrogels,polyaniline hydrogels,poly(3,4-ethylenedioxythiophene),and their derivative hydrogels,the progress of their applications in the field of supercapacitor electrodes,battery electrodes,and biomedical electrodes were outlined.

关键词

聚苯胺 / 聚吡咯 / 聚(3,4-乙基二氧噻吩) / 导电聚合物水凝胶 / 电极

Key words

polyaniline / polypyrrole / poly(3,4-ethylenedioxythiophene) / conductive polymer hydrogel / electrode

引用本文

引用格式 ▾
导电聚合物水凝胶在电极材料中的应用研究进展[J]. 化工新型材料, 2022, 50(9): 12-15 DOI:10.19817/j.cnki.issn1006-3536.2022.09.003

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] Tang X,Ng H Y.Anthraquinone-2-sulfonate immobilized to conductive polypyrrole hydrogel as a bioanode to enhance power production in microbial fuel cell[J].Bioresource Technology,2017,244:452-455.
[2] Karakuş M Ö,Yakş kler M E,Delibaş A,et al.Anionic and cationic polymer-based quasi-solid-state dye-sensitized solar cell with poly (aniline) counter electrode[J].Solar Energy,2020,195:565-572.
[3] Yao T,Jia W,Tong X,et al.One-step preparation of nanobeads-based polypyrrole hydrogel by a reactive-template method and their applications in adsorption and catalysis[J].Journal of Colloid and Interface Science,2018,527:214-221.
[4] 张旭,孙辉,樊保民,等.原位聚合制备半纤维素基聚吡咯导电水凝胶[J].食品与机械,2020,36(6):75-79,165.
[5] Huang H,Yao J,Liu Y,et al.3D nanostructured polypyrrole/sodium alginate conducting hydrogel from self-assembly with high supercapacitor performance[J].Journal of Macromolecular Science,Part B,2017,56(8):532-540.
[6] Şahin M E,Blaabjerg F,Sangwongwanich A.A comprehensive review on supercapacitor applications and developments[J].Energies,2022,15(3):674.
[7] Pan L,Yu G,Zhai D,et al.Hierarchical nanostructured conducting polymer hydrogel with high electrochemical activity[J].Proceedings of the National Academy of Sciences,2012,109(24):9287-9292.
[8] Li W,Li X,Zhang X,et al.Flexible poly(vinyl alcohol)-polyaniline hydrogel film with vertically aligned channels for an integrated and self-healable supercapacitor[J].ACS Applied Energy Materials,2020,3(9):9408-9416.
[9] Liu Z,Zhao Z,Xu A,et al.Facile preparation of graphene/polyaniline composite hydrogel film by electrodeposition for binder-free all-solid-state supercapacitor[J].Journal of Alloys and Compounds,2021,875:159931.
[10] Zang L,Liu Q,Qiu J,et al.Design and fabrication of an all-solid-state polymer supercapacitor with highly mechanical flexibility based on polypyrrole hydrogel[J].ACS Applied Materials & Interfaces,2017,9(39):33941-33947.
[11] Sun K,Feng E,Zhao G,et al.A single robust hydrogel film based integrated flexible supercapacitor[J].ACS Sustainable Chemistry & Engineering,2018,7(1):165-173.
[12] Pattananuwat P,Aht-Ong D.One-step method to fabricate the highly porous layer of poly (pyrrole/(3,4-ethylenedioxythiophene)/) wrapped graphene hydrogel composite electrode for the flexibile supercapacitor[J].Materials Letters,2016,184:60-64.
[13] Saborío M C G,Lanzalaco S,Fabregat G,et al.Flexible electrodes for supercapacitors based on the supramolecular assembly of biohydrogel and conducting polymer[J].The Journal of Physical Chemistry C,2018,122(2):1078-1090.
[14] Guo Y,Bae J,Zhao F,et al.Functional hydrogels for next-generation batteries and supercapacitors[J].Trends in Chemistry,2019,1(3):335-348.
[15] Wu H,Yu G,Pan L,et al.Stable Li-ion battery anodes by in-situ polymerization of conducting hydrogel to conformally coat silicon nanoparticles[J].Nature Communications,2013,4(1):1-6.
[16] Liao Y,Liang K,Ren Y,et al.Fabrication of SiOx-G/PAA-PANi/Graphene composite with special cross-doped conductive hydrogels as anode materials for lithium ion batteries[J].Frontiers in Chemistry,2020,8:96.
[17] Wu K,Huang J,Tu J,et al.Reinforced polyaniline-dodecyl benzene sulfonate hydrogel with well-aligned fibrous morphology as durable electrode materials for Zn-ion battery[J].Synthetic Metals,2021,274:116721.
[18] Wang Y,Wen Q,Chen Y,et al.Conductive polypyrrole-carboxymethyl cellulose-titanium nitride/carbon brush hydrogels as bioanodes for enhanced energy output in microbial fuel cells[J].Energy,2020,204:117942.
[19] Liu J,Chen Y,Zhang W,et al.A hydrogel-coated porous sulfur particle as volume-accommodable,conductivity-improved,and polysulfide-adsorptive cathode for lithium-sulfur batteries[J].Journal of Electroanalytical Chemistry,2019,841:26-35.
[20] Green R A,Baek S,Poole-Warren L A,et al.Conducting polymer-hydrogels for medical electrode applications[J].Science and Technology of Advanced Materials,2010,11(1):014107.
[21] Mehrali M,Bagherifard S,Akbari M,et al.Blending electronics with the human body:a pathway toward a cybernetic future[J].Advanced Science,2018,5(10):1700931.
[22] Mao J,Zhang Z.Polypyrrole as electrically conductive biomaterials:synthesis,biofunctionalization,potential applications and challenges[J].Cutting-Edge Enabling Technologies for Regenerative Medicine,2018:347-370.
[23] Tian G,Liu Y,Yu M,et al.Electrostatic interaction-based high tissue adhesive,stretchable microelectrode arrays for the electrophysiological interface[J].ACS Applied Materials & Interfaces,2022,DOI:10.1021/acsami.1c18983.
[24] 邢季,杨熙,第凤,等.碳纳米管/聚吡咯导电水凝胶修饰生物电极的研究[J].中国科技论文,2014,9(12):1368-1371.
[25] Shang X,He S,Xu Z,et al.Hemin-phytic acid functionalized porous conducting polymer hydrogel with good biocompatibility for electrochemical detection of H2O2 released from living cells[J].Electroanalysis,2021,33(4):1088-1095.
[26] Wu R,Li L,Pan L,et al.Long-term cell culture and electrically in situ monitoring of living cells based on a polyaniline hydrogel sensor[J].Journal of Materials Chemistry B,2021,9(46):9514-9523.
[27] Zhou X,Rajeev A,Subramanian A,et al.Self-healing,stretchable,and highly adhesive hydrogels for epidermal patch electrodes[J].Acta Biomaterialia,2022,139:296-306.
[28] Kleber C,Lienkamp K,Rühe J,et al.Electrochemically controlled drug release from a conducting polymer hydrogel(PDMAAp/PEDOT) for local therapy and bioelectronics[J].Advanced Healthcare Materials,2019,8(10):1801488.

基金资助

山西省重点研发计划项目(20193D121114)

AI Summary AI Mindmap
PDF

673

访问

0

被引

导航
相关文章

AI思维导图

/