|本期目录/Table of Contents|

[1]李 亮,王浩楠,陈郁勃,等.聚吡咯/磺化石墨烯/磺化碳纳米管复合材料的界面合成[J].武汉工程大学学报,2020,42(01):45-49.[doi:10.19843/j.cnki.CN42-1779/TQ.201812007]
 LI Liang,WANG Haonan,CHEN Yubo,et al.Interfacial Synthesis and Properties of Polypyrrole/Sulfolated Graphene/Sulfolated Carbon Nanotubes Composites[J].Journal of Wuhan Institute of Technology,2020,42(01):45-49.[doi:10.19843/j.cnki.CN42-1779/TQ.201812007]
点击复制

聚吡咯/磺化石墨烯/磺化碳纳米管复合材料的界面合成(/HTML)
分享到:

《武汉工程大学学报》[ISSN:1674-2869/CN:42-1779/TQ]

卷:
42
期数:
2020年01期
页码:
45-49
栏目:
材料科学与工程
出版日期:
2021-01-25

文章信息/Info

Title:
Interfacial Synthesis and Properties of Polypyrrole/Sulfolated Graphene/Sulfolated Carbon Nanotubes Composites
文章编号:
1674 - 2869(2020)01 - 0045 - 05
作者:
李 亮王浩楠陈郁勃陈宇欣喻湘华
武汉工程大学材料科学与工程学院,湖北 武汉 430205
Author(s):
LI LiangWANG HaonanCHEN YuboCHEN YuxinYU Xianghua
School of Materials Science and Engineering,Wuhan Institute of Technology, Wuhan 430205, China
关键词:
聚吡咯磺化石墨烯磺化碳纳米管复合材料界面聚合
Keywords:
polypyrrole sulfonated graphene sulfonated carbon nanotube composites interfacial polymerization
分类号:
O633
DOI:
10.19843/j.cnki.CN42-1779/TQ.201812007
文献标志码:
A
摘要:
对氧化石墨烯(GO)和碳纳米管(CNT)进行磺化处理,得到的磺化石墨烯(SG)和磺化碳纳米管(SCNT)在溶液中有良好的分散性。将SG、SCNT和氧化剂溶于水中形成水相,聚吡咯(PPy)单体溶于有机溶剂中形成有机相。有机相与水相之间发生界面反应,得到PPy/SG/SCNT复合材料。采用扫描电子显微镜、X射线衍射、电化学工作站对复合材料进行表征与测试。结果表明:PPy/SG/SCNT复合材料组分复合均匀,是无定形材料,其电化学性能较单独的PPy、SG或SCNT更优越,而且当正己烷作为有机溶剂时,所得到的三组分复合材料更适合作为超级电容器电极材料。
Abstract:
The graphene oxide(GO) and carbon nanotubes (CNT) were sulfonted to produce the sulfonated graphene (SG) and sulfonated carbon nanotube (SCNT). SG and SCNT had good dispersion properties in solution. SG,SCNT and oxidizer were dissolved in water to form aqueous phase, and polypyrrole monomer(PPy) was dissolved in organic solvent to form organic phase. The PPy/SG/SCNT composite was obtained through the interfacial reaction between aqueous phase and organic phase. The composites were characterized by scanning electron microscopy,X-ray diffraction and electrochemical workstation. The results show that the amorphous PPy/SG/SCNT composites have uniform microstructure. Their electrochemical performances are superior to those of PPy,SG or SCNT. Moreover,when hexane is used as an organic solvent,the prepared composites are suitable electrode material used in supercapacitor.

参考文献/References:

[1] PINSRITHONG S,BUNKOED O. Hierarchical porous nanostructured polypyrrole-coated hydrogel beads containing reduced graphene oxide and magnetite nanoparticles for extraction of phthalates in bottled drinks[J]. Journal of Chromatography A,2018,1570: 19-27. [2] TRAN X T,PARK S S,SONG S,et al. Electroconductive performance of polypyrrole/reduced graphene oxide/carbon nanotube composites synthesized via in situ oxidative polymerization[J]. Journal of Materials Science,2019,54(4):3156-3173. [3] KANDASAMY S K,KANDASAMY K. Recent advances in electrochemical performances of graphene composite (graphene-polyaniline/polypyrrole/activated carbon/carbon nanotube) electrode materials for supercapacitor: a review[J]. Journal of Inorganic and Organometallic Polymers and Materials,2018,28(3):559-584. [4] SABET M,JAHANGIRI H,GHASHGHAEI E. Synthesis of carbon nanotube,graphene,CoFe2O4,and NiFe2O4 polypyrrole nanocomposites and study their microwave absorption[J]. Journal of Materials Science: Materials in Electronics,2018,29(13):10853-10863. [5] FU Y,TIAN C G,LIU F Y,et al. An effective poly (p-phenylenevinylene) polymer adhesion route toward three-dimensional nitrogen-doped carbon nanotube/reduced graphene oxide composite for direct electrocatalytic oxygen reduction[J]. Nano Research,2016,9(11): 3364-3376. [6] AKHTAR M A,HAYAT A,IQBAL N,et al. Functionalized graphene oxide-polypyrrole-chitosan(fGO-PPy-CS) modified screen-printed electrodes for non-enzymatic hydrogen peroxide detection[J]. Journal of Nanoparticle Research,2017,19(10):334(1)-334(11). [7] LI K, ZHANG J T. Recent advances in flexible supercapacitors based on carbon nanotubes and graphene[J]. Science China Materials,2018,61(2):210-232. [8] KA?AR C, ERDEN P E , KILI? E. Amperometric L-lysine enzyme electrodes based on carbon nanotube/redox polymer and graphene/carbon nanotube/redox polymer composites[J]. Analytical and Bioanalytical Chemistry,2017,409(11): 2873-2883. [9] WANG Z B,ZHANG C L,XU C Q,et al. Hollow polypyrrole nanosphere embedded in nitrogen-doped graphene layers to obtain a three-dimensional nanostructure as electrode material for electrochemical supercapacitor[J]. Ionics,2017,23(1):147-156. [10] WANG J P,LI X,DU X F,et al. Polypyrrole composites with carbon materials for supercapacitors[J]. Chemical Papers,2017,71(2): 293-316. [11] AHMADI F,GHASEMI S. Electrophoretic deposition of copper-copper hydroxide/graphene oxide nano- composite for supercapacitor[J]. Journal of Materials Science: Materials in Electronics,2018,29(11): 9067-9076. [12] AZMAN N H N,MAMAT M S,LIM H N,et al. High-performance symmetrical supercapacitor based on poly (3,4)-ethylenedioxythiophene/graphene oxide/iron oxide ternary composite[J]. Journal of Materials Science: Materials in Electronics,2018,29(8): 6916-6923. [13] 李亮,胡军,班兴明,等. 石墨烯的制备及表征[J]. 武汉工程大学学报,2014,36(8):46-50. [14] 魏端丽,熊慧之,朱珍妮,等. 二氧化锰/碳纳米管/聚吡咯复合材料的制备及性能[J]. 武汉工程大学学报,2017,39(2):164-168. [15] 李亮,陈海春,邱唯楚,等. 氮掺杂石墨烯/氧化亚铜复合凝胶的制备与性能[J]. 武汉工程大学学报,2018,40(4):410-414. [16] HUANG J X,VIRJI S,WEILLER B H,et al. Polyaniline nanofibers: facile synthesis and chemical sensors [J]. Journal of the American Chemical Socitey,2003,125(2):314-315. [17] CHONDATH S K, POOLAKKANDY R R,KOTTAYINTAVIDA R,et al. Water-chloroform interface assisted microstructure tuning of polypyrrole-silver sheets [J]. ACS Applied Materials & Interfaces,2019,11(1):1723-1731. [18] NISHI N, YAJIMA I, AMANO K, et al. Janus-type gold/polythiophene composites formed via redox reaction at the ionic liquid/water interface [J]. Langmuir,2018,34(7):2441-2447. [19] LU J L, LIU W S, LING H, et al. Layer-by-layer assembled sulfonated-graphene/polyaniline nanocomposite films: enhanced electrical and ionic conductivities, and electrochromic properties [J]. RSC Advances,2012,2(28):10537-10543. [20] YI B,RAJAGOPALAN R,FOLEY H C,et al. Catalytic polymerization and facile grafting of poly(furfuryl alcohol) to single-wall carbon nanotube:? preparation of nanocomposite carbon [J]. Journal of the American Chemical Socitey,2006,128(34):11307-11313.

相似文献/References:

[1]李亮,李兰艳,王牌.聚吡咯/二氧化锰复合材料的合成与性能[J].武汉工程大学学报,2013,(03):43.[doi:103969/jissn16742869201303009]
 LI Liang,LI Lan Yan,WANG Pai.Synthesis and properties of polypyrrole and polypyrrole/MnO2 composite[J].Journal of Wuhan Institute of Technology,2013,(01):43.[doi:103969/jissn16742869201303009]
[2]李亮,陈旭,艾建连.偶氮染料掺杂聚吡咯纳米/微米结构材料的制备[J].武汉工程大学学报,2013,(04):55.[doi:103969/jissn 16742869201304013]
 LI Liang,CHEN Xu,AI Jian lian.Preparation of polypyrrole with nano/micro structures doped by azo dyes[J].Journal of Wuhan Institute of Technology,2013,(01):55.[doi:103969/jissn 16742869201304013]
[3]李亮,朱寒冰,喻丹,等.甲基橙掺杂聚吡咯氧化石墨烯复合材料[J].武汉工程大学学报,2013,(05):43.[doi:103969/jissn16742869201305009]
 LI Liang,ZHU Han bing,YU Dan,et al.Composites of polypyrrole/graphene oxide doped by methyl orange[J].Journal of Wuhan Institute of Technology,2013,(01):43.[doi:103969/jissn16742869201305009]
[4]李亮,陈郁勃,孙配雷,等.聚吡咯与三氧化二铁复合材料制备与表征[J].武汉工程大学学报,2014,(07):35.[doi:103969/jissn16742869201407007]
 LI Liang,CHEN Yu bo,SUN Pei lei,et al.Synthesis and characterization of polypyrrole/ferric oxide composites[J].Journal of Wuhan Institute of Technology,2014,(01):35.[doi:103969/jissn16742869201407007]
[5]魏端丽,熊惠之,朱珍妮,等.二氧化锰/碳纳米管/聚吡咯复合材料的制备及性能[J].武汉工程大学学报,2017,39(02):164.[doi:10. 3969/j. issn. 1674 2869. 2017. 02. 011]
 WEI Duanli,XIONG Huizhi,ZHU Zhenni,et al.Synthesis and Properties of MnO2/Carbon Nanotube/Polypyrrole Composites[J].Journal of Wuhan Institute of Technology,2017,39(01):164.[doi:10. 3969/j. issn. 1674 2869. 2017. 02. 011]
[6]李 阳,邱唯楚,蔡 卓,等.聚吡咯/石墨烯复合水凝胶的制备与性能[J].武汉工程大学学报,2018,40(05):530.[doi:10. 3969/j. issn. 1674-2869. 2018. 05. 010]
 LI Yang,QIU Weichu,CAI Zhuo,et al.Preparation and Properties of Polypyrrole/Graphene Compoiste Hydrogels[J].Journal of Wuhan Institute of Technology,2018,40(01):530.[doi:10. 3969/j. issn. 1674-2869. 2018. 05. 010]
[7]王翔宇,杜寒威,季家友,等.瓜尔胶/聚丙烯酰胺基导电复合水凝胶的制备及传感性能[J].武汉工程大学学报,2023,45(05):524.[doi:10.19843/j.cnki.CN42-1779/TQ.202209033]
 WANG Xiangyu,DU Hanwei,JI Jiayou,et al.Preparation and Mechanical Sensing Properties of GuarGum/Polyacrylamide-Based Conductive Composite Hydrogels[J].Journal of Wuhan Institute of Technology,2023,45(01):524.[doi:10.19843/j.cnki.CN42-1779/TQ.202209033]

备注/Memo

备注/Memo:
收稿日期:2018-12-10 基金项目:武汉工程大学第十届研究生教育创新基金(CX2018062);湖北高等学校省级大学生创新创业训练计划项目(201810490010) 作者简介:李 亮,博士,教授。E-mail: msell08@163.com 引文格式:李亮,王浩楠,陈郁勃,等. 聚吡咯/磺化石墨烯/磺化碳纳米管复合材料的界面合成[J]. 武汉工程大学学报,2020,42(1):45-49.
更新日期/Last Update: 2020-06-09