-
A.
Jänes,
H.
Kurig,
E.
Lust
(2007)
Characterisation of activated nanoporous carbon for supercapacitor electrode materials
Carbon, 45
-
Yong
Zhou,
Q.
Bao,
L.
Tang,
Y.
Zhong,
K.
Loh
(2009)
Hydrothermal Dehydration for the “Green” Reduction of Exfoliated Graphene Oxide to Graphene and Demonstration of Tunable Optical Limiting Properties
Chemistry of Materials, 21
-
A.K.
Geim,
K.
Novoselov
(2007)
The rise of graphene.
Nature materials, 6 3
-
Yanwu
Zhu,
S.
Murali,
M.
Stoller,
K.
Ganesh,
Weiwei
Cai,
P.
Ferreira,
A.
Pirkle,
R.
Wallace,
K.
Cychosz,
M.
Thommes,
D.
Su,
E.
Stach,
R.
Ruoff
(2011)
Carbon-Based Supercapacitors Produced by Activation of Graphene
Science, 332
-
Tae
Kim,
Hyun
Lee,
M.
Stoller,
Daniel
Dreyer,
C.
Bielawski,
R.
Ruoff,
K.
Suh
(2011)
High-performance supercapacitors based on poly(ionic liquid)-modified graphene electrodes.
ACS nano, 5 1
-
Sanjib
Biswas,
L.
Drzal
(2010)
Multilayered nano-architecture of variable sized graphene nanosheets for enhanced supercapacitor electrode performance.
ACS applied materials & interfaces, 2 8
-
Xiaowei
Yang,
Junwu
Zhu,
Ling
Qiu,
Dan
Li
(2011)
Bioinspired Effective Prevention of Restacking in Multilayered Graphene Films: Towards the Next Generation of High‐Performance Supercapacitors
Advanced Materials, 23
-
Hai-jing
Liu,
Xiao-ming
Wang,
Wang-jun
Cui,
Yuqian
Dou,
Dongyuan
Zhao,
Yongyao
Xia
(2010)
Highly ordered mesoporous carbon nanofiber arrays from a crab shell biological template and its application in supercapacitors and fuel cells
Journal of Materials Chemistry, 20
-
M.
Winter,
R.
Brodd
(2004)
What are batteries, fuel cells, and supercapacitors?
Chemical reviews, 104 10
-
Wen
Lu,
L.
Qu,
Kent
Henry,
L.
Dai
(2009)
High performance electrochemical capacitors from aligned carbon nanotube electrodes and ionic liquid electrolytes
Journal of Power Sources, 189
-
Yiqing
Sun,
Qiongyu
Wu,
G.
Shi
(2011)
Graphene based new energy materials
Energy and Environmental Science, 4
-
Qiong
Wu,
Yiqing
Sun,
Hua
Bai,
G.
Shi
(2011)
High-performance supercapacitor electrodes based on graphene hydrogels modified with 2-aminoanthraquinone moieties.
Physical chemistry chemical physics : PCCP, 13 23
-
Xiaobin
Fan,
W.
Peng,
Yang
Li,
Xianyu
Li,
Shulan
Wang,
Guoliang
Zhang,
Feng-bao
Zhang
(2008)
Deoxygenation of Exfoliated Graphite Oxide under Alkaline Conditions: A Green Route to Graphene Preparation
Advanced Materials, 20
-
M.
Stoller,
Sungjin
Park,
Yanwu
Zhu,
J.
An,
R.
Ruoff
(2008)
Graphene-based ultracapacitors.
Nano letters, 8 10
-
Changgu
Lee,
Xiaoding
Wei,
J.
Kysar,
J.
Hone
(2008)
Measurement of the Elastic Properties and Intrinsic Strength of Monolayer Graphene
Science, 321
-
Dan
Li,
M.
Müller,
S.
Gilje,
R.
Kaner,
G.
Wallace
(2008)
Processable aqueous dispersions of graphene nanosheets.
Nature nanotechnology, 3 2
-
Jun
Yan,
Tong
Wei,
Bo
Shao,
Fuqiu
Ma,
Zhuangjun
Fan,
Milin
Zhang,
Chao
Zheng,
Y.
Shang,
W.
Qian,
F.
Wei
(2010)
Electrochemical properties of graphene nanosheet/carbon black composites as electrodes for supercapacitors
Carbon, 48
-
Wei
Lv,
Daiming
Tang,
Yan‐Bing
He,
Conghui
You,
Zhiming
Shi,
Xue-cheng
Chen,
Chengmeng
Chen,
P.
Hou,
Chang
Liu,
Quan-hong
Yang
(2009)
Low-temperature exfoliated graphenes: vacuum-promoted exfoliation and electrochemical energy storage.
ACS nano, 3 11
-
Dongxing
Yang,
A.
Velamakanni,
Gülay
Bozoklu,
Sungjin
Park,
M.
Stoller,
R.
Piner,
S.
Stankovich,
I.
Jung,
D.
Field,
C.
Ventrice,
R.
Ruoff
(2009)
Chemical analysis of graphene oxide films after heat and chemical treatments by X-ray photoelectron and Micro-Raman spectroscopy
Carbon, 47
-
Kaixuan
Sheng,
Yuxi
Xu,
Chun
Li,
G.
Shi
(2011)
High-performance self-assembled graphene hydrogels prepared by chemical reduction of graphene oxide
Electrochimica Acta
-
Chenguang
Liu,
Zhenning
Yu,
D.
Neff,
A.
Zhamu,
B.
Jang
(2010)
Graphene-based supercapacitor with an ultrahigh energy density.
Nano letters, 10 12
-
Yiqing
Sun,
Qiongyu
Wu,
Yuxi
Xu,
H.
Bai,
Chun
Li,
G.
Shi
(2011)
Highly conductive and flexible mesoporous graphitic films prepared by graphitizing the composites of graphene oxide and nanodiamond
Journal of Materials Chemistry, 21
-
Yuxi
Xu,
H.
Bai,
G.
Lu,
Chun
Li,
G.
Shi
(2008)
Flexible graphene films via the filtration of water-soluble noncovalent functionalized graphene sheets.
Journal of the American Chemical Society, 130 18
-
Qiongyu
Wu,
Yuxi
Xu,
Z.
Yao,
Anran
Liu,
G.
Shi
(2010)
Supercapacitors based on flexible graphene/polyaniline nanofiber composite films.
ACS nano, 4 4
-
Hao
Zhang,
Gaoping
Cao,
Yusheng
Yang
(2009)
Carbon nanotube arrays and their composites for electrochemical capacitors and lithium-ion batteries
Energy and Environmental Science, 2
-
A.
Peigney,
C.
Laurent,
E.
Flahaut,
R.
Bacsa,
A.
Rousset
(2001)
Specific surface area of carbon nanotubes and bundles of carbon nanotubes
Carbon, 39
-
Lili
Zhang,
Rui
Zhou,
X.
Zhao
(2010)
Graphene-based materials as supercapacitor electrodes
Journal of Materials Chemistry, 20
-
J.
Gamby,
P.
Taberna,
P.
Simon,
J.
Fauvarque,
M.
Chesneau
(2001)
Studies and characterisations of various activated carbons used for carbon/carbon supercapacitors
Journal of Power Sources, 101
-
H.
Jeong,
Yun
Lee,
M.
Jin,
Eun
Kim,
J.
Bae,
Y.
Lee
(2009)
Thermal stability of graphite oxide
Chemical Physics Letters, 470
-
Yuxi
Xu,
Lu
Zhao,
H.
Bai,
Wenjing
Hong,
Chun
Li,
G.
Shi
(2009)
Chemically converted graphene induced molecular flattening of 5,10,15,20-tetrakis(1-methyl-4-pyridinio)porphyrin and its application for optical detection of cadmium(II) ions.
Journal of the American Chemical Society, 131 37
-
C.
Merino,
P.
Soto,
Eduardo
Vilaplana-Ortego,
J.
Salazar,
F.
Pico,
J.
Rojo
(2005)
Carbon nanofibres and activated carbon nanofibres as electrodes in supercapacitors
Carbon, 43
-
I.
Jung,
D.
Dikin,
R.
Piner,
R.
Ruoff
(2008)
Tunable electrical conductivity of individual graphene oxide sheets reduced at "low" temperatures.
Nano letters, 8 12
-
K.
An,
W.
Kim,
Y.
Park,
J.
Moon,
D.
Bae,
S.
Lim,
Young
Lee,
Y.
Lee
(2001)
Electrochemical Properties of High-Power Supercapacitors Using Single-Walled Carbon Nanotube Electrodes
Advanced Functional Materials, 11
-
Yan
Wang,
Zhi-qiang
Shi,
Yi
Huang,
Yanfeng
Ma,
Cheng-yang
Wang,
Mingming
Chen,
Yongsheng
Chen
(2009)
SUPERCAPACITOR DEVICES BASED ON GRAPHENE MATERIALS
Journal of Physical Chemistry C, 113
-
M.
Inagaki,
H.
Konno,
O.
Tanaike
(2010)
Carbon materials for electrochemical capacitors
Journal of Power Sources, 195
-
Haiqun
Chen,
M.
Müller,
K.
Gilmore,
G.
Wallace,
Dan
Li
(2008)
Mechanically Strong, Electrically Conductive, and Biocompatible Graphene Paper
Advanced Materials, 20
-
F.
Sillars,
S.
Fletcher,
M.
Mirzaeian,
Peter
Hall
(2011)
Effect of activated carbon xerogel pore size on the capacitance performance of ionic liquid electrolytes
Energy and Environmental Science, 4
-
P.
Azais,
L.
Duclaux,
P.
Florian,
D.
Massiot,
M.
Lillo-Ródenas,
Á.
Linares-Solano,
J.
Pérès,
C.
Jehoulet,
F.
Béguin
(2007)
Causes of supercapacitors ageing in organic electrolyte
Journal of Power Sources, 171
-
Michael
McAllister,
Je-Luen
Li,
D.
Adamson,
H.
Schniepp,
Ahmed
Abdala,
Jun
Liu,
M.
Herrera-Alonso,
D.
Milius,
R.
Car,
‡.
Prud‘homme,
I.
Aksay
(2007)
Single Sheet Functionalized Graphene by Oxidation and Thermal Expansion of Graphite
Chemistry of Materials, 19
-
Sheng
Chen,
Junwu
Zhu,
Xiaodong
Wu,
Qiaofeng
Han,
Xin
Wang
(2010)
Graphene oxide--MnO2 nanocomposites for supercapacitors.
ACS nano, 4 5
-
D.
Futaba,
K.
Hata,
Takeo
Yamada,
T.
Hiraoka,
Y.
Hayamizu,
Y.
Kakudate,
O.
Tanaike,
H.
Hatori,
M.
Yumura,
S.
Iijima
(2006)
Shape-engineerable and highly densely packed single-walled carbon nanotubes and their application as super-capacitor electrodes
Nature Materials, 5
-
Yuxi
Xu,
Kaixuan
Sheng,
Chun
Li,
G.
Shi
(2010)
Self-assembled graphene hydrogel via a one-step hydrothermal process.
ACS nano, 4 7
-
Li
Zhang,
G.
Shi
(2011)
Preparation of Highly Conductive Graphene Hydrogels for Fabricating Supercapacitors with High Rate Capability
Journal of Physical Chemistry C, 115
-
John
Miller,
P.
Simon
(2008)
Electrochemical Capacitors for Energy Management
Science, 321
-
P.
Simon,
Y.
Gogotsi
(2008)
Materials for electrochemical capacitors.
Nature materials, 7 11