[journal]
Simon P
/ 2008
/ Materials for electrochemical capacitors
/ Nat Mater
7
: 845~854
[journal]
Miller JR
/ 2008
/ Electrochemical capacitors for energy management
/ Science
321
: 651~652
[journal]
Wang H
/ 2011
/ Advanced asymmetrical supercapacitors based on graphene hybrid materials
/ Nano Res
4
: 729~736
[journal]
Salgado S
/ 2012
/ Targeting chemical morphology of graphenen oxide for self-assembly and subsequent templating of nanoparticles : a composite approaching capacitance limits in graphene
/ J Phys Chem C
116
: 12124~12130
[journal]
Kong Q
/ 2013
/ Small particles of chemically-reduced graphene with improved electrochemical capacity
/ J Phys Chem C
117
: 15496~15504
[journal]
Sridhar V
/ 2012
/ Defect-engineered three-dimensional graphene-nanotube-palladium nanostructures with ultra high capacitance
/ ACS Nano
6
: 10562~10570
[journal]
Xu M
/ 2007
/ Hydrothermal synthesis and pseudocapacitance properties of MnO2hollow spheres and hollow urchins
/ J Phys Chem C
111
: 19141~19147
[journal]
Wang K
/ 2010
/ Conducting polyaniline nanowire arrays for high performance supercapacitors
/ J Phys Chem C
114
: 8062~8067
[journal]
Ghosh S
/ 1999
/ Conducting polymer hydrogels as 3D electrodes : applications for supercapacitors
/ Adv Mater
11
: 1214~1218
[journal]
Nayak S
/ 2018
/ Sol–gel synthesized BiFeO3–graphene nanocomposite as efficient electrode for supercapacitor application
/ J Mater Sci Mater Electron
29
: 9361~9368
[journal]
Soam A
/ 2019
/ Synthesis of nickel ferrite nanoparticles supported on graphene nanosheets as composite electrodes for high performance supercapacitor
/ Chem Select
4
: 9952~9958
[journal]
Soam A
/ 2019
/ Development of paper-basedflexible supercapacitor : bismuth ferrite/graphene nanocomposite as an active electrode material
/ J Alloy Compd
813
: 152145~
[journal]
Das S
/ 2014
/ SnO2 : a comprehensive review on structures and gas sensors
/ Prog Mater Sci
66
: 112~255
[journal]
Birkel A
/ 2012
/ Highly efficient and stable dye-sensitized solar cells based on SnO2nanocrystals prepared by microwave-assisted synthesis
/ Energy Environ Sci
5
: 5392~5400
[journal]
Wijeratne K
/ 2012
/ Enhancing the solar cell efficiency through pristine 1-dimentional SnO2nanostructures: comparison of charge transport and carrier lifetime of SnO2particles vs. nanorods
/ Electrochim Acta
72
: 192~198
[journal]
Yi Chen L
/ 2015
/ One-step hydrothermal synthesis of SnS2/SnO2/C hierarchical heterostructures for Li-ion batteries anode with superior rate capabilities
/ Electrochim Acta
183
: 78~84
[journal]
Li Y
/ 2015
/ Growth of ultrafine SnO2nanoparticles within multiwall carbon nanotube networks : non-solution synthesis and excellent electrochemical properties as anodes for lithium ion batteries
/ Electrochim Acta
178
: 778~787
[journal]
Cui H
/ 2013
/ Large scale synthesis of highly crystallized SnO2quantum dots at room temperature and their high electrochemical performance
/ Nanotechnology
24
: 345602~
[journal]
Hea MC
/ 2014
/ Bingfu Lei : mosaic-structured CC-SnO2 porous microspheres for high-performance supercapacitor electrode materials
/ Electrochim Acta
142
: 157~166
[journal]
Bhanjana G
/ 2015
/ SnO2quantum dots as novel platform for electrochemical sensing of cadmium
/ Electrochim Acta
169
: 97~102
[journal]
Idota Y
/ 1997
/ Tin-based amorphous oxide : a high-capacity lithium-ion-storage material
/ Science
276
: 1395~1397
[journal]
Zhou ZY
/ 2011
/ Nanomaterials of high surface energy with exceptional properties in catalysis and energy storage
/ Chem Soc Rev
40
: 4167~4185
[journal]
Han Y
/ 2007
/ Preparation and characterization of graphite oxide/polypyrrole composites
/ Carbon
45
: 2394~2399
[journal]
Gupta V
/ 2006
/ Polyaniline/single-wall carbon nanotube(PANI/SWCNT)composites for high performance supercapacitors
/ Electrochim Acta
52
: 1721~1726
[journal]
Wang GX
/ 2005
/ Manganese oxide/MWNTs com-posite electrodes for supercapacitors
/ Electrochim Acta
176
: 1169~1174
[journal]
Zhang X
/ 2007
/ Synthesis of a novel polyaniline-intercalated layered manganese oxide nanocomposite as electrode mate-rial for electrochemical capacitor
/ J Power Sources
173
: 1017~1023
[journal]
Yan J
/ 2010
/ Fast and reversible surface redoxreaction of graphene-MnO2 composites as supercapacitor electrodes
/ Carbon
48
: 3825~3833
[journal]
Wang H
/ 2010
/ Ni(OH)2 nanoplates grown on graphene as advanced electrochemical pseudocapacitor materials
/ J Am Chem Soc
132
: 7472~7477
[journal]
Chen S
/ 2010
/ One-step synthesis of graphenecobalt hydroxide nanocomposites and their electrochemical properties
/ J Phys Chem C
114
: 11829~11834
[journal]
Xu J
/ 2010
/ Hierarchical nanocomposites of polyaniline nanowire arrays on graphene oxide sheets with synergistic effect for energy storage
/ ACS Nano
4
: 5019~5026
[journal]
Yu G
/ 2011
/ Enhancing the supercapacitor performance of graphene/MnO2 nanostructured electrodes by conductive wrapping
/ Nano Lett
11
: 4438~4442
[journal]
Kumar R
/ 2016
/ Synthesis and characterization of low specific resistance alumina-clay-carbon composites by colloidal processing using sucrose as a soluble carbon source for electrical applications
/ RSC Adv
6
: 8705~8713
[journal]
Kumar R
/ 2017
/ Fabrication of low specific resistance ceramic carbon composites by colloidal processing using glucose as soluble carbon source
/ Bull Mater Sci
40
: 1197~1202
[journal]
Kumar R
/ 2017
/ In-situ growth of silica nanowires in ceramic carbon composites
/ Asian Ceram Soc
5
: 304~312
[journal]
Kumar R
/ 2019
/ Insitu carbon coated manganese oxide nanorods(ISCC-MnO2NRs)as an electrode material for supercapacitors
/ Diam Relat Mater
94
: 110~117
[journal]
Kumar R
/ 2015
/ Fabrication of low specific resistance ceramic carbon composites by slip casting
/ Asian Ceram Soc
3
: 262~265
[journal]
Miao L
/ 2017
/ Design of carbon materials with ultramicro-, supermicro-and mesopores using solvent-and self-template strategy for supercapacitors
/ Microporous Mesoporous Mater
253
: 1~9
[journal]
Wang D
/ 2012
/ Defect-rich crystalline SnO2immobilized on graphene nanosheets with enhanced cycle performance for Li ion batteries
/ J Phys Chem C
116
: 22149~22156
[journal]
Du Z
/ 2010
/ In situ synthesis of SnO2/graphene nanocomposite and their application as anode material for lithium ion battery
/ Mater Lett
64
: 2076~2079
[journal]
Ma C
/ 2016
/ Carbon coated SnO2nanoparticles anchored on CNT as a superior anode material for lithium-ionbatteries
/ Nanoscale
8
: 4121~4126
[journal]
Kumar R
/ 2018
/ Sucrose derived carbon coated silicon nanowires for supercapacitor application
/ J Mater Sci Mater Electron
29
: 1947~1954
[journal]
Kumar R
/ 2015
/ A simple route to making counter electrode for dye sensitized solar cells(DSSCs)using sucrose as carbon precursor
/ J Colloid Interface Sci
459
: 146~150
[journal]
Kumar R
/ 2017
/ Synthesis and characterization of carbon based counter electrode for dye sensitized solar cells(DSSCs)using sugar free as a carbon material
/ Sol Energy
144
: 215~220
[journal]
Kumar R
/ 2015
/ Fabrication of a counter electrode using glucose as carbon material for dye sensitized solar cells
/ Mater Sci Semicond Process
40
: 331~336
[journal]
Kumar R
/ 2018
/ Synthesis and characterization of carbon based counter electrode for dye sensitized solar cells(DSSCs)using organic precursor 2-2′ bipyridine(Bpy)as a carbon material
/ J Alloy Compd
748
: 905~910
[journal]
Kumar R
/ 2019
/ Fabrication of a counter electrode for dye-sensitized solar cells(DSSCs)using carbon material produced by organic ligand 2-methyl-8-hydroxyquinolinol(Mq)
/ J Nanoscale Adv
1
: 3292~3299
[journal]
Kumar R
/ 2019
/ Carbon derived from sucrose as anode material for lithium-ion batteries
/ J Electron Mater
48
: 7389~7395
[journal]
Wang D
/ 2013
/ Layer by layer assembly of sandwiched graphene/SnO2nanorod/carbon nanostructures with ultrahigh lithium ion storage properties
/ Energy Environ Sci
6
: 2900~2906
[journal]
Tan C
/ 2014
/ Facile and surfactantfree synthesis of SnO2-graphene hybrids as high-performance anode for lithium-ion batteries
/ Ionics
21
: 987~994
[journal]
Barr TL
/ 1995
/ Nature of the use of adventitious carbon as a binding energy standard
/ J Vacuum Sci Technol A
13
: 1239~1246
[journal]
Higginbotham AL
/ 2010
/ Lower-defect graphene oxide nanoribbons from multiwalled carbon nanotubes
/ ACS Nano
4
: 2059~2069
[journal]
Utsumi S
/ 2007
/ Direct evidence on C-C single bonding in single-wall carbon nanohorn aggregates
/ J Phys Chem C
111
: 5572~5575
[journal]
Hou X
/ 2015
/ One-step synthesis of SnOx nanocrystalline aggregates encapsulated by amorphous TiO2as an anode in Li-ion battery
/ J Mater Chem A
3
: 9982~9988
[journal]
Liu J
/ 2014
/
/ Chem Commun
50
: 13971~13974
[journal]
Kumar U
/ 2018
/ Extraordinary supercapacitance in activated carbon produced via a sustainable approach
/ J Power Sources
394
: 140~147
[journal]
Liu T
/ 2017
/ Revitalizing carbon supercapacitor electrodes with hierarchical porous structures
/ J Mater Chem
5
: 17705~17733
[journal]
Zhang Y
/ 2015
/ Growth of 3D SnO2nanosheets on carbon cloth asa binder-free electrode for supercapacitors
/ J Mater Chem A
3
: 15057~15067
[journal]
Nguyen T
/ 2019
/ Metal oxide and hydroxidebased aqueous supercapacitors : from charge storage mechanisms and functional electrodeengineering to need-tailored devices
/ Adv Sci
6
: 1801797~
[journal]
Wu ZS
/ 2012
/ Graphene/metal oxide composite electrode materials for energy storage
/ Nano Energy
1
: 107~131
[journal]
Wang Y
/ 2009
/ Supercapacitor devices based on graphene materials
/ J Phys Chem C
13
: 13103~13107
[journal]
Lee JW
/ 2012
/ Hydrothermal preparation of nitrogen-doped graphene sheets via hexamethylenetetramine for application as supercapacitor electrodes
/ Electrochim Acta
85
: 459~464