-
2
-
-
35248856374
-
Carbon-supported, nano-structured, manganese oxide composite electrode for electrochemical supercapacitor
-
Sharma RK, Oh HS, Shul YG et al (2007) Carbon-supported, nano-structured, manganese oxide composite electrode for electrochemical supercapacitor. J Power Sources 173: 1024-1028.
-
(2007)
J Power Sources
, vol.173
, pp. 1024-1028
-
-
Sharma, R.K.1
Oh, H.S.2
Shul, Y.G.3
-
4
-
-
79951932188
-
Manganese oxide-based materials as electrochemical supercapacitor electrodes
-
Wei WF, Cui XW, Chen WX et al (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.F.1
Cui, X.W.2
Chen, W.X.3
-
6
-
-
84867619332
-
2@carbon nanofibers composites electrodes in mild electrolyte
-
2@carbon nanofibers composites electrodes in mild electrolyte. J Power Sources 224: 86-92.
-
(2013)
J Power Sources
, vol.224
, pp. 86-92
-
-
Wang, J.G.1
Yang, Y.2
Huang, Z.H.3
-
7
-
-
19444363087
-
Ordered, nanostructured tin-based oxides/carbon composite as the negative-electrode material for lithium-ion batteries
-
Fan J, Wang T, Yu CZ et al (2004) Ordered, nanostructured tin-based oxides/carbon composite as the negative-electrode material for lithium-ion batteries. Adv Mater 16: 1432-1436.
-
(2004)
Adv Mater
, vol.16
, pp. 1432-1436
-
-
Fan, J.1
Wang, T.2
Yu, C.Z.3
-
8
-
-
70449397630
-
One-dimensional composite nanomaterials: synthesis by electrospinning and their applications
-
Lu X, Wang C, Wei Y (2009) One-dimensional composite nanomaterials: synthesis by electrospinning and their applications. Small 5: 2349-2370.
-
(2009)
Small
, vol.5
, pp. 2349-2370
-
-
Lu, X.1
Wang, C.2
Wei, Y.3
-
9
-
-
79955566346
-
2 composite electrodes for supercapacitors
-
2 composite electrodes for supercapacitors. Carbon 49: 2917-2925.
-
(2011)
Carbon
, vol.49
, pp. 2917-2925
-
-
Cheng, Q.1
Tang, J.2
Ma, J.3
-
10
-
-
84858719367
-
2 coaxial nano-cables for high energy and power density supercapacitors
-
2 coaxial nano-cables for high energy and power density supercapacitors. J Power Sources 208: 345-353.
-
(2012)
J Power Sources
, vol.208
, pp. 345-353
-
-
Zhi, M.J.1
Manivannan, A.2
Meng, F.K.3
-
11
-
-
4243121654
-
Effect of heat treatment on material characteristics and pseudo-capacitive properties of manganese oxide prepared by anodic deposition
-
Chang JK, Chen YL, Tsai WT (2004) Effect of heat treatment on material characteristics and pseudo-capacitive properties of manganese oxide prepared by anodic deposition. J Power Sources 135: 344-353.
-
(2004)
J Power Sources
, vol.135
, pp. 344-353
-
-
Chang, J.K.1
Chen, Y.L.2
Tsai, W.T.3
-
12
-
-
63949083606
-
4 by using the electrospinning technique: the nanofibers have two band-gap energies
-
4 by using the electrospinning technique: the nanofibers have two band-gap energies. Appl Phys A 95: 769-776.
-
(2009)
Appl Phys A
, vol.95
, pp. 769-776
-
-
Barakat, N.A.M.1
Woo, K.D.2
Ansari, S.G.3
-
13
-
-
84872698792
-
Fabrication of graphene sheets intercalated with manganese oxide/carbon nanofibers: toward high-capacity energy storage
-
Kwon OS, Kim T, Lee JS et al (2012) Fabrication of graphene sheets intercalated with manganese oxide/carbon nanofibers: toward high-capacity energy storage. Small 9: 248-254.
-
(2012)
Small
, vol.9
, pp. 248-254
-
-
Kwon, O.S.1
Kim, T.2
Lee, J.S.3
-
14
-
-
34948892768
-
Graphene thickness determination using reflection and contrast spectroscopy
-
Ni ZH, Wang HM, Kasim J et al (2007) Graphene thickness determination using reflection and contrast spectroscopy. Nano Lett 7: 2758-2763.
-
(2007)
Nano Lett
, vol.7
, pp. 2758-2763
-
-
Ni, Z.H.1
Wang, H.M.2
Kasim, J.3
-
15
-
-
80053293746
-
2 nanocomposites as freestanding electrodes for high-performance electrochemical capacitors
-
2 nanocomposites as freestanding electrodes for high-performance electrochemical capacitors. Electrochim Acta 56: 9240-9247.
-
(2011)
Electrochim Acta
, vol.56
, pp. 9240-9247
-
-
Wang, J.G.1
Yang, Y.2
Huang, Z.H.3
-
16
-
-
33847231614
-
Synthesis of high surface area, water-dispersible graphitic carbon nanocages by an in situ template approach
-
Wang JN, Zhang L, Niu JJ et al (2007) Synthesis of high surface area, water-dispersible graphitic carbon nanocages by an in situ template approach. Chem Mater 19: 453-459.
-
(2007)
Chem Mater
, vol.19
, pp. 453-459
-
-
Wang, J.N.1
Zhang, L.2
Niu, J.J.3
-
17
-
-
77954800961
-
Supercapacitive properties of hybrid films of manganese dioxide and polyaniline based on active carbon in organic electrolyte
-
Zou WY, Wang W, He BL et al (2010) Supercapacitive properties of hybrid films of manganese dioxide and polyaniline based on active carbon in organic electrolyte. J Power Sources 195: 7489-7493.
-
(2010)
J Power Sources
, vol.195
, pp. 7489-7493
-
-
Zou, W.Y.1
Wang, W.2
He, B.L.3
-
18
-
-
65249142828
-
Remarkable capacity retention of nanostructured manganese oxide upon cycling as an electrode material for supercapacitor
-
Ragupathy P, Park DH, Campet G et al (2009) Remarkable capacity retention of nanostructured manganese oxide upon cycling as an electrode material for supercapacitor. J Phys Chem C 113: 6303-6309.
-
(2009)
J Phys Chem C
, vol.113
, pp. 6303-6309
-
-
Ragupathy, P.1
Park, D.H.2
Campet, G.3
-
19
-
-
84862776795
-
High-performance supercapacitor electrodes based on highly corrugated graphene sheets
-
Yan J, Liu JP, Fan ZJ et al (2012) High-performance supercapacitor electrodes based on highly corrugated graphene sheets. Carbon 50: 2179-2188.
-
(2012)
Carbon
, vol.50
, pp. 2179-2188
-
-
Yan, J.1
Liu, J.P.2
Fan, Z.J.3
-
20
-
-
77955430412
-
2 composites as supercapacitor electrodes
-
2 composites as supercapacitor electrodes. Carbon 48: 3825-3833.
-
(2010)
Carbon
, vol.48
, pp. 3825-3833
-
-
Yan, J.1
Fan, Z.J.2
Wei, T.3
-
21
-
-
84863848926
-
Anomalous pseudocapacitive behavior of a nanostructured, mixed-valent manganese oxide film for electrical energy storage
-
Song MK, Cheng S, Chen H et al (2012) Anomalous pseudocapacitive behavior of a nanostructured, mixed-valent manganese oxide film for electrical energy storage. Nano Lett 12: 3483-3490.
-
(2012)
Nano Lett
, vol.12
, pp. 3483-3490
-
-
Song, M.K.1
Cheng, S.2
Chen, H.3
|