-
1
-
-
7544234502
-
What are batteries, fuel cells, and supercapacitors?
-
Winter M, Brodd RJ (2004) What are batteries, fuel cells, and supercapacitors? Chem Rev 104:4245–4270
-
(2004)
Chem Rev
, vol.104
, pp. 4245-4270
-
-
Winter, M.1
Brodd, R.J.2
-
2
-
-
0347318651
-
Principles and applications of electrochemical capacitors
-
Kötz R, Carlen M (2000) Principles and applications of electrochemical capacitors. Electrochim Acta 45:2483–2498
-
(2000)
Electrochim Acta
, vol.45
, pp. 2483-2498
-
-
Kötz, R.1
Carlen, M.2
-
3
-
-
54949139227
-
Materials for electrochemical capacitors
-
Simon P, Gogotsi Y (2008) Materials for electrochemical capacitors. Nat Mater 7:845–854
-
(2008)
Nat Mater
, vol.7
, pp. 845-854
-
-
Simon, P.1
Gogotsi, Y.2
-
4
-
-
70349344453
-
Carbon-based materials as supercapacitor electrodes
-
Zhang LL, Zhao XS (2009) Carbon-based materials as supercapacitor electrodes. Chem Soc Rev 38:2520–2531
-
(2009)
Chem Soc Rev
, vol.38
, pp. 2520-2531
-
-
Zhang, L.L.1
Zhao, X.S.2
-
5
-
-
84862572712
-
An overview of the applications of graphene-based materials in supercapacitors
-
Huang Y, Liang J, Chen Y (2012) An overview of the applications of graphene-based materials in supercapacitors. Small 8:1805–1834
-
(2012)
Small
, vol.8
, pp. 1805-1834
-
-
Huang, Y.1
Liang, J.2
Chen, Y.3
-
6
-
-
84859847002
-
Carbon nanomaterials for advanced energy conversion and Storage
-
Dai L, Chang DW, Baek J-B, Lu W (2012) Carbon nanomaterials for advanced energy conversion and Storage. Small 8:1130–1166
-
(2012)
Small
, vol.8
, pp. 1130-1166
-
-
Dai, L.1
Chang, D.W.2
Baek, J.-B.3
Lu, W.4
-
7
-
-
84871259969
-
3D carbon based nanostructures for advanced supercapacitors
-
Jiang H, Lee PS, Li C (2012) 3D carbon based nanostructures for advanced supercapacitors. Energy Environ Sci 6:41–53
-
(2012)
Energy Environ Sci
, vol.6
, pp. 41-53
-
-
Jiang, H.1
Lee, P.S.2
Li, C.3
-
8
-
-
33646861617
-
Carbon properties and their role in supercapacitors
-
Pandolfo AG, Hollenkamp AF (2006) Carbon properties and their role in supercapacitors. J Power Sources 157:11–27
-
(2006)
J Power Sources
, vol.157
, pp. 11-27
-
-
Pandolfo, A.G.1
Hollenkamp, A.F.2
-
9
-
-
84865079529
-
One-dimensional metal-oxide nanostructures: recent developments in synthesis, characterization, and applications
-
Devan RS, Patil RA, Lin J-H, Ma Y-R (2012) One-dimensional metal-oxide nanostructures: recent developments in synthesis, characterization, and applications. Adv Funct Mater 22:3326–3370
-
(2012)
Adv Funct Mater
, vol.22
, pp. 3326-3370
-
-
Devan, R.S.1
Patil, R.A.2
Lin, J.-H.3
Ma, Y.-R.4
-
10
-
-
84870947581
-
Nanostructured carbon–metal oxide composite electrodes for supercapacitors: a review
-
Zhi M, Xiang C, Li J, Li M, Wu N (2012) Nanostructured carbon–metal oxide composite electrodes for supercapacitors: a review. Nanoscale 5:72–88
-
(2012)
Nanoscale
, vol.5
, pp. 72-88
-
-
Zhi, M.1
Xiang, C.2
Li, J.3
Li, M.4
Wu, N.5
-
11
-
-
79952674047
-
The role of nanomaterials in redox-based supercapacitors for next generation energy storage devices
-
Zhao X, Sánchez BM, Dobson PJ, Grant PS (2011) The role of nanomaterials in redox-based supercapacitors for next generation energy storage devices. Nanoscale 3:839–855
-
(2011)
Nanoscale
, vol.3
, pp. 839-855
-
-
Zhao, X.1
Sánchez, B.M.2
Dobson, P.J.3
Grant, P.S.4
-
12
-
-
79951932188
-
Manganese oxide-based materials as electrochemical supercapacitor electrodes
-
Wei W, Cui X, Chen W, Ivey DG (2011) Manganese oxide-based materials as electrochemical supercapacitor electrodes. Chem Soc Rev 40:1697–1721
-
(2011)
Chem Soc Rev
, vol.40
, pp. 1697-1721
-
-
Wei, W.1
Cui, X.2
Chen, W.3
Ivey, D.G.4
-
13
-
-
77956342501
-
Conducting-polymer-based supercapacitor devices and electrodes
-
Snook GA, Kao P, Best AS (2011) Conducting-polymer-based supercapacitor devices and electrodes. J Power Sources 196:1–12
-
(2011)
J Power Sources
, vol.196
, pp. 1-12
-
-
Snook, G.A.1
Kao, P.2
Best, A.S.3
-
14
-
-
79960701451
-
Toward flexible polymer and paper-based energy storage devices
-
Nyholm L, Nyström G, Mihranyan A, Strømme M (2011) Toward flexible polymer and paper-based energy storage devices. Adv Mater 23:3751–3769
-
(2011)
Adv Mater
, vol.23
, pp. 3751-3769
-
-
Nyholm, L.1
Nyström, G.2
Mihranyan, A.3
Strømme, M.4
-
15
-
-
78649826432
-
Polyoxometalate-based functional nanostructured films: current progress and future prospects
-
Liu S, Tang Z (2010) Polyoxometalate-based functional nanostructured films: current progress and future prospects. Nano Today 5:267–281
-
(2010)
Nano Today
, vol.5
, pp. 267-281
-
-
Liu, S.1
Tang, Z.2
-
17
-
-
70349546291
-
4 thin film for use in an electrochemical supercapacitor
-
4 thin film for use in an electrochemical supercapacitor. Electrochim Acta 55:1–5
-
(2009)
Electrochim Acta
, vol.55
, pp. 1-5
-
-
Chen, J.1
Huang, K.2
Liu, S.3
-
18
-
-
84929454748
-
Effect of surfactant on the electrochemical performance of graphene/iron oxide electrode for supercapacitor
-
Ghasemi S, Ahmadi F (2015) Effect of surfactant on the electrochemical performance of graphene/iron oxide electrode for supercapacitor. J Power Sources 289:129–137
-
(2015)
J Power Sources
, vol.289
, pp. 129-137
-
-
Ghasemi, S.1
Ahmadi, F.2
-
19
-
-
84860275338
-
Influence of metal oxide nanoparticles on pseudocapacitive behavior of wet-spun polyaniline-multiwall carbon nanotube fibers
-
Mirmohseni A, Dorraji MSS, Hosseini MG (2012) Influence of metal oxide nanoparticles on pseudocapacitive behavior of wet-spun polyaniline-multiwall carbon nanotube fibers. Electrochim Acta 70:182–192
-
(2012)
Electrochim Acta
, vol.70
, pp. 182-192
-
-
Mirmohseni, A.1
Dorraji, M.S.S.2
Hosseini, M.G.3
-
24
-
-
70349546291
-
4 thin film for use in an electrochemical supercapacitor
-
4 thin film for use in an electrochemical supercapacitor. Electrochim Acta 55:1–5
-
(2009)
Electrochim Acta
, vol.55
, pp. 1-5
-
-
Chen, J.1
Huang, K.2
Liu, S.3
-
25
-
-
84880786793
-
Chemical adsorption of NiO nanostructures on nickel foam-graphene for supercapacitor applications
-
Bello A, Makgopa K, Fabiane M, Dodoo-Ahrin D, Ozoemena KI, Manyala N (2013) Chemical adsorption of NiO nanostructures on nickel foam-graphene for supercapacitor applications. J Mater Sci 48:6707–6712
-
(2013)
J Mater Sci
, vol.48
, pp. 6707-6712
-
-
Bello, A.1
Makgopa, K.2
Fabiane, M.3
Dodoo-Ahrin, D.4
Ozoemena, K.I.5
Manyala, N.6
-
29
-
-
84925491377
-
Growth of aluminum-substituted nickel hydroxide nanoflakes on nickel foam with ultrahigh specific capacitance at high current density
-
Wang M, Xue J, Zhang F, Ma W, Cu H (2014) Growth of aluminum-substituted nickel hydroxide nanoflakes on nickel foam with ultrahigh specific capacitance at high current density. J Mater Sci 50:2422–2428
-
(2014)
J Mater Sci
, vol.50
, pp. 2422-2428
-
-
Wang, M.1
Xue, J.2
Zhang, F.3
Ma, W.4
Cu, H.5
-
30
-
-
79951677193
-
4 on supercapacitive properties of carbon nanotubes
-
4 on supercapacitive properties of carbon nanotubes. Curr Appl Phys 11:462–466
-
(2011)
Curr Appl Phys
, vol.11
, pp. 462-466
-
-
Kim, Y.H.1
Park, S.J.2
-
31
-
-
82555171675
-
4 nanosheets on one-dimensional carbon nanofibers: synthesis, formation mechanism, and electrochemical performance as supercapacitor electrode materials
-
4 nanosheets on one-dimensional carbon nanofibers: synthesis, formation mechanism, and electrochemical performance as supercapacitor electrode materials. Nanoscale 3:5034–5040
-
(2011)
Nanoscale
, vol.3
, pp. 5034-5040
-
-
Mu, J.1
Chen, B.2
Guo, Z.3
Zhang, M.4
Zhang, Z.5
Zhang, P.6
Shao, C.7
Liu, Y.8
-
32
-
-
84877276310
-
Construction of high-capacitance 3D CoO@polypyrrole nanowire array electrode for aqueous asymmetric supercapacitor
-
Zhou C, Zhang Y, Li Y, Liu J (2013) Construction of high-capacitance 3D CoO@polypyrrole nanowire array electrode for aqueous asymmetric supercapacitor. Nano Lett 13:2078–2208
-
(2013)
Nano Lett
, vol.13
, pp. 2078-2208
-
-
Zhou, C.1
Zhang, Y.2
Li, Y.3
Liu, J.4
-
33
-
-
77957989291
-
Electrochemical capacitance of nanocomposite polypyrrole/cellulose films
-
Liew SY, DA ThielemansW Walsh (2010) Electrochemical capacitance of nanocomposite polypyrrole/cellulose films. J Phys Chem C 114:17926–17933
-
(2010)
J Phys Chem C
, vol.114
, pp. 17926-17933
-
-
Liew, S.Y.1
DA ThielemansW, W.2
-
34
-
-
84901287799
-
Electrochemical supercapacitors from conducting polyaniline–graphene platforms
-
Kumar NA, Baek JB (2014) Electrochemical supercapacitors from conducting polyaniline–graphene platforms. Chem Commun 50:6298–6308
-
(2014)
Chem Commun
, vol.50
, pp. 6298-6308
-
-
Kumar, N.A.1
Baek, J.B.2
-
35
-
-
84893312067
-
Enzymatic synthesis of polyaniline/multi-walled carbon nanotube composite with core shell structure and its electrochemical characterization for supercapacitor application
-
Otrokhov G, Pankratov D, Shumakovich G, Khlupova M, Zeifman Y, Vasil’eva I, Morozova O, Yaropolov A (2014) Enzymatic synthesis of polyaniline/multi-walled carbon nanotube composite with core shell structure and its electrochemical characterization for supercapacitor application. Electrochim Acta 123:151–157
-
(2014)
Electrochim Acta
, vol.123
, pp. 151-157
-
-
Otrokhov, G.1
Pankratov, D.2
Shumakovich, G.3
Khlupova, M.4
Zeifman, Y.5
Vasil’eva, I.6
Morozova, O.7
Yaropolov, A.8
-
36
-
-
80455177158
-
2 nanotube hybrid nanocomposite as supercapacitor electrode material in acidic electrolyte
-
2 nanotube hybrid nanocomposite as supercapacitor electrode material in acidic electrolyte. J Mater Chem 21:17601–17605
-
(2011)
J Mater Chem
, vol.21
, pp. 17601-17605
-
-
Jaidev, J.R.I.1
Mishra, A.K.2
Ramaprabhu, S.3
-
37
-
-
39449112648
-
Porous conducting polymer/heteropolyoxometalate hybrid material for electrochemical supercapacitor applications
-
Suppes GM, Deore BA, Freund MS (2008) Porous conducting polymer/heteropolyoxometalate hybrid material for electrochemical supercapacitor applications. Langmuir 24:1064–1069
-
(2008)
Langmuir
, vol.24
, pp. 1064-1069
-
-
Suppes, G.M.1
Deore, B.A.2
Freund, M.S.3
-
38
-
-
84903551676
-
Surfactant-assisted synthesis of reduced graphene oxide/polyaniline composites by gamma irradiation for supercapacitors
-
Cai X, Zhang Q, Wang S, Peng J, Zhang Y, Ma H, Li J, Zhai M (2014) Surfactant-assisted synthesis of reduced graphene oxide/polyaniline composites by gamma irradiation for supercapacitors. J Mater Sci 49:5667–5675
-
(2014)
J Mater Sci
, vol.49
, pp. 5667-5675
-
-
Cai, X.1
Zhang, Q.2
Wang, S.3
Peng, J.4
Zhang, Y.5
Ma, H.6
Li, J.7
Zhai, M.8
-
39
-
-
84930273746
-
Nanostructured polystyrene/polyaniline/graphene hybrid materials for electrochemical supercapacitor and Na-ion battery applications
-
Chen J, Liu Y, Li W, Wu C, Xu L, Yang H (2015) Nanostructured polystyrene/polyaniline/graphene hybrid materials for electrochemical supercapacitor and Na-ion battery applications. J Mater Sci 50:5466–5474
-
(2015)
J Mater Sci
, vol.50
, pp. 5466-5474
-
-
Chen, J.1
Liu, Y.2
Li, W.3
Wu, C.4
Xu, L.5
Yang, H.6
-
40
-
-
42149191307
-
MWNTs/PANI composite materials prepared by in situ chemical oxidative polymerization for supercapacitor electrode
-
Kong LB, Zhang J, An JJ, Luo YC, Kang L (2008) MWNTs/PANI composite materials prepared by in situ chemical oxidative polymerization for supercapacitor electrode. J Mater Sci 43:3664–3669
-
(2008)
J Mater Sci
, vol.43
, pp. 3664-3669
-
-
Kong, L.B.1
Zhang, J.2
An, J.J.3
Luo, Y.C.4
Kang, L.5
-
41
-
-
84904746994
-
Synthesis and electrochemical performances of a novel two-dimensional nanocomposite: polyaniline-coated laponite nanosheets
-
Li X, Zhou M, Xu H, Wang G, Wang Z (2014) Synthesis and electrochemical performances of a novel two-dimensional nanocomposite: polyaniline-coated laponite nanosheets. J Mater Sci 49:6830–6837
-
(2014)
J Mater Sci
, vol.49
, pp. 6830-6837
-
-
Li, X.1
Zhou, M.2
Xu, H.3
Wang, G.4
Wang, Z.5
-
42
-
-
80053505109
-
4 nanospheres and its application for the catalytic degradation of xylenol orange
-
4 nanospheres and its application for the catalytic degradation of xylenol orange. J Phys Chem C 115:18923–18934
-
(2011)
J Phys Chem C
, vol.115
, pp. 18923-18934
-
-
Zhu, M.1
Diao, G.2
-
43
-
-
84857252277
-
4@C nanocomposites: preparation, characterization, and their catalytic activity toward suzuki and heck coupling reactions
-
4@C nanocomposites: preparation, characterization, and their catalytic activity toward suzuki and heck coupling reactions. J Phys Chem C 115:24743–24749
-
(2011)
J Phys Chem C
, vol.115
, pp. 24743-24749
-
-
Zhu, M.1
Diao, G.2
|