Chemical synthesis and enhanced electrical properties of bulk poly(3,4-ethylenedioxythiophene)/reduced graphene oxide nanocomposites

被引:16
作者
Chen, Liangjun [1 ]
Liu, Wei [1 ]
Su, Xianli [1 ]
Xiao, Shengqiang [1 ]
Xie, Hongyao [1 ]
Uher, Ctirad [2 ]
Tang, Xinfeng [1 ]
机构
[1] Wuhan Univ Technol, State Key Lab Adv Technol Mat Synth & Proc, Wuhan 430070, Peoples R China
[2] Univ Michigan, Dept Phys, Ann Arbor, MI 48109 USA
关键词
Bulk PEDOT; rGO doping; Thermal treatment; Electrical conductivity; THERMOELECTRIC PROPERTIES; CARBON NANOTUBES; LAYER GRAPHENE; GRAPHITE OXIDE; THIN-FILMS; COMPOSITES; PERFORMANCE; REDUCTION; PEDOTPSS;
D O I
10.1016/j.synthmet.2017.05.010
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
PEDOT, poly(3,4-ethylenedioxythiophene), is an important conjugated conducting polymer, and a complex salt PEDOT:PSS has been widely researched on account of its advantages of favorable workability, excellent film forming ability and decent electrical conductivity. Although PEDOT films with excellent thermoelectric properties have already been intensively described in the literature, few reports focused on thermoelectric properties of bulk forms of PEDOT. Here, we report on bulk PEDOT and its composites with reduced graphene oxide (PEDOT/rGO) synthesized by a chemical method combined with cold pressing and thermal treatment. The impact of the rGO doping and the thermal treatment on the electrical transport properties of PEDOT and PEDOT/rGO is discussed. The results show that 0.44 wt% of rGO doping improves the electrical conductivity of PEDOT by a factor of about 2. The electrical conductivity of PEDOT/0.44 wt% rGO is further increased by about 3 times after the thermal treatment. Moreover, the power factor of bulk PEDOT is enhanced by a factor of 16 following the thermal treatment. The pi-pi txinteraction between rGO and PEDOT, the closer packing within the polymer matrix, as well as the more ordered structure within the polymer matrix induced by the thermal treatment and the addition of rGO are of crucial importance for the remarkable improvement of the electrical conductivity and the power factor.
引用
收藏
页码:65 / 71
页数:7
相关论文
共 46 条
[1]   Enhancement of Thermoelectric Properties of PEDOT:PSS and Tellurium-PEDOT:PSS Hybrid Composites by Simple Chemical Treatment [J].
Bae, Eun Jin ;
Kang, Young Hun ;
Jang, Kwang-Suk ;
Cho, Song Yun .
SCIENTIFIC REPORTS, 2016, 6
[2]   Ultrahigh electron mobility in suspended graphene [J].
Bolotin, K. I. ;
Sikes, K. J. ;
Jiang, Z. ;
Klima, M. ;
Fudenberg, G. ;
Hone, J. ;
Kim, P. ;
Stormer, H. L. .
SOLID STATE COMMUNICATIONS, 2008, 146 (9-10) :351-355
[3]  
Bubnova O, 2011, NAT MATER, V10, P429, DOI [10.1038/NMAT3012, 10.1038/nmat3012]
[4]   Preparation of Polyaniline Covalently Grafted Carbon Nanotubes Supported Pt Catalysts and Its Electrocatalytic Performance for Methanol [J].
Chen Jianhui ;
Tong Hao ;
Gao Zhenzhen ;
Zhu Jiajia ;
Zhang Xiaogang ;
Liang Yanyu .
ACTA CHIMICA SINICA, 2013, 71 (12) :1647-1655
[5]   Improved functionality of PEDOT:PSS thin films via graphene doping, fabricated by ultrasonic substrate vibration-assisted spray coating [J].
Chen, Qianli ;
Zabihi, Fatemeh ;
Eslamian, Morteza .
SYNTHETIC METALS, 2016, 222 :309-317
[6]   First-Principles Study of Thermoelectric Properties of Covalent Organic Frameworks [J].
Chumakov, Yurii ;
Aksakal, Fatma ;
Dimoglo, Anatholy ;
Ata, Ali ;
Palomares-Sanchez, Salvador A. .
JOURNAL OF ELECTRONIC MATERIALS, 2016, 45 (07) :3445-3452
[7]  
Combessis A., 2012, P 2012 ANN REP C EL
[8]   Electrical conductivity of waterborne polyurethane/graphene composites prepared by solution mixing [J].
Ding, J. N. ;
Fan, Y. ;
Zhao, C. X. ;
Liu, Y. B. ;
Yu, C. T. ;
Yuan, N. Y. .
JOURNAL OF COMPOSITE MATERIALS, 2012, 46 (06) :747-752
[9]   A review on thermoelectric renewable energy: Principle parameters that affect their performance [J].
Elsheikh, Mohamed Hamid ;
Shnawah, Dhafer Abdulameer ;
Sabri, Mohd Faizul Mohd ;
Said, Suhana Binti Mohd ;
Hassan, Masjuki Haji ;
Bashir, Mohamed Bashir Ali ;
Mohamad, Mahazani .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2014, 30 :337-355
[10]  
Gao W, 2015, GRAPHENE OXIDE REDUC