Production of graphene oxide from pitch-based carbon fiber

被引:20
作者
Lee, Miyeon [1 ]
Lee, Jihoon [2 ,4 ]
Park, Sung Young [3 ,4 ]
Min, Byunggak [2 ]
Kim, Bongsoo [1 ]
In, Insik [2 ,4 ]
机构
[1] Korea Adv Inst Sci & Technol, Dept Chem, Taejon 305701, South Korea
[2] Korea Natl Univ Transportat, Dept Polymer Sci & Engn, Chungju Si 380702, Chungbuk, South Korea
[3] Korea Natl Univ Transportat, Dept Chem & Biol Engn, Chungju Si 380702, Chungbuk, South Korea
[4] Korea Natl Univ Transportat, Dept Chem & Biol Engn, Dept IT Convergence BK PLUS 21, Chungju Si 380702, Chungbuk, South Korea
来源
SCIENTIFIC REPORTS | 2015年 / 5卷
关键词
GRAPHITE OXIDE; FUNCTIONALIZATION; EXFOLIATION; REDUCTION; CHEMISTRY;
D O I
10.1038/srep11707
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Pitch-based graphene oxide (p-GO) whose compositional/structural features are comparable to those of graphene oxide (GO) was firstly produced by chemical exfoliation of pitch-based carbon fiber rather than natural graphite. Incorporation of p-GO as nanofillers into poly(methyl methacrylate) PMMA) as a matrix polymer resulted in excellent mechanical reinforcement. p-GO/PMMA nanocomposite (1 wt.-% p-GO) demonstrated 800% higher modulus of toughness of neat PMMA.
引用
收藏
页数:10
相关论文
共 24 条
[1]   Measuring the degree of stacking order in graphite by Raman spectroscopy [J].
Cancado, L. G. ;
Takai, K. ;
Enoki, T. ;
Endo, M. ;
Kim, Y. A. ;
Mizusaki, H. ;
Speziali, N. L. ;
Jorio, A. ;
Pimenta, M. A. .
CARBON, 2008, 46 (02) :272-275
[2]   Graphene Oxide: Preparation, Functionalization, and Electrochemical Applications [J].
Chen, Da ;
Feng, Hongbin ;
Li, Jinghong .
CHEMICAL REVIEWS, 2012, 112 (11) :6027-6053
[3]   Chemical reduction of graphene oxide: a synthetic chemistry viewpoint [J].
Chua, Chun Kiang ;
Pumera, Martin .
CHEMICAL SOCIETY REVIEWS, 2014, 43 (01) :291-312
[4]   The chemistry of graphene oxide [J].
Dreyer, Daniel R. ;
Park, Sungjin ;
Bielawski, Christopher W. ;
Ruoff, Rodney S. .
CHEMICAL SOCIETY REVIEWS, 2010, 39 (01) :228-240
[5]   Functionalization of Graphene: Covalent and Non-Covalent Approaches, Derivatives and Applications [J].
Georgakilas, Vasilios ;
Otyepka, Michal ;
Bourlinos, Athanasios B. ;
Chandra, Vimlesh ;
Kim, Namdong ;
Kemp, K. Christian ;
Hobza, Pavel ;
Zboril, Radek ;
Kim, Kwang S. .
CHEMICAL REVIEWS, 2012, 112 (11) :6156-6214
[6]   Formation of Semiconducting Chemically Reduced Graphene Oxide/Cellulose Assembly through Noncovalent Interactions [J].
Ha, Seong-Gyoun ;
Yeon, Young-Ju ;
Jung, Seonho ;
Park, Young Ho ;
Park, Byoungnam ;
In, Insik .
CHEMISTRY LETTERS, 2013, 42 (11) :1409-1411
[7]   High-yield production of graphene by liquid-phase exfoliation of graphite [J].
Hernandez, Yenny ;
Nicolosi, Valeria ;
Lotya, Mustafa ;
Blighe, Fiona M. ;
Sun, Zhenyu ;
De, Sukanta ;
McGovern, I. T. ;
Holland, Brendan ;
Byrne, Michele ;
Gun'ko, Yurii K. ;
Boland, John J. ;
Niraj, Peter ;
Duesberg, Georg ;
Krishnamurthy, Satheesh ;
Goodhue, Robbie ;
Hutchison, John ;
Scardaci, Vittorio ;
Ferrari, Andrea C. ;
Coleman, Jonathan N. .
NATURE NANOTECHNOLOGY, 2008, 3 (09) :563-568
[8]   STUDY OF OXYGEN-CONTAINING GROUPS IN A SERIES OF GRAPHITE OXIDES - PHYSICAL AND CHEMICAL CHARACTERIZATION [J].
HONTORIALUCAS, C ;
LOPEZPEINADO, AJ ;
LOPEZGONZALEZ, JDD ;
ROJASCERVANTES, ML ;
MARTINARANDA, RM .
CARBON, 1995, 33 (11) :1585-1592
[9]   Graphene/Polymer Nanocomposites [J].
Kim, Hyunwoo ;
Abdala, Ahmed A. ;
Macosko, Christopher W. .
MACROMOLECULES, 2010, 43 (16) :6515-6530
[10]   Large-scale pattern growth of graphene films for stretchable transparent electrodes [J].
Kim, Keun Soo ;
Zhao, Yue ;
Jang, Houk ;
Lee, Sang Yoon ;
Kim, Jong Min ;
Kim, Kwang S. ;
Ahn, Jong-Hyun ;
Kim, Philip ;
Choi, Jae-Young ;
Hong, Byung Hee .
NATURE, 2009, 457 (7230) :706-710