Biomedical Engineering Reference
In-Depth Information
48. Shigemura,
H.,
et
al.
(2001).
Structure
and
electrochemical
x
properties of LiFe
Mn
O
(0
0.5) spinel as 5 V electrode
x
2
-
x
4
material for lithium batteries.
J. Electrochem. Soc.
,
148
(7): pp.
A730-A736.
49. Arora, P., Popov, B. N. and White, R. E. (1998). Electrochemical
investigations of cobalt-doped LiMn
O
as cathode material for
2
4
(3): pp. 807-815.
50. Fang, T.-T. and Chung, H.-Y. (2008). Reassessment of the electronic-
conduction behavior above Verwey-like transition of Ni
lithium-ion batteries
.
J. Electrochem. Soc.
,
145
2+
- and Al
3+
-
(1): pp. 342-345.
51. Padhi, A. K., Nanjundaswamy, K. S., and Goodenough, J. (1997).
Phospho-olivines and positive-electrode materials for rechargeable
lithium batteries.
doped LiMn
O
.
J. Am. Ceram. Soc.
,
91
2
4
J. Electrochem. Soc.
,
144
(4): pp. 1188-1194.
52. Wu, X.-L.,
Nanoparticles embedded in
a nanoporous carbon matrix: superior cathode material for
electrochemical energy-storage devices.
et al.
(2009). LiFePO
4
Adv. Mater.
,
21
(25-26): pp.
2710-2714.
53. Okubo, M.,
et al.
(2007). Nanosize effect on high-rate Li-ion
intercalation in
LiCoO
electrode
.
J. Am. Chem. Soc.
,
129
(23): pp.
2
7444-7452.
54. Hu, Y.-S.,
(2006). High lithium electroactivity of nanometer-
sized rutile TiO
et al.
(11): pp. 1421-1426.
55. Jiao, F., and Bruce, P. G. (2007). Mesoporous crystalline
.
Adv. Mater.
,
18
2
— a
reversible positive electrode for rechargeable lithium batteries.
b
-MnO
2
Adv.
(5): pp. 657-660.
56. Robertson, A. D., Armstrong, A. R., and Bruce, P. G. (2001). Layered
Li
Mater.
,
19
intercalation electrodesinfluence of ion exchange
on capacity and structure upon cycling.
Mn
Co
O
x
1
-
y
y
2
Chem. Mater.
,
13
(7): pp.
2380-2386.
57. Pereira, N.,
et al.
(2003). Electrochemistry of Cu
N with lithium.
3
J. Electrochem. Soc.
,
150
(9): pp. A1273-A1280.
a
58. Chen, J.,
et al.
(2005).
-Fe
O
nanotubes in gas sensor and lithium-
2
3
(5): pp. 582-586.
59. Jamnik, J., and Maier, J. (2003). Nanocrystallinity effects in lithium
battery materials Aspects of nano-ionics. Part IV.
ion battery applications.
Adv. Mater.
,
17
Phys. Chem. Chem.
Phys.
,
5
(23): pp. 5215-5220.
 
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