Biomedical Engineering Reference
In-Depth Information
74. Wagemaker, M., Borghols, W. J. H., and Mulder, F. M. (2007). Large
impact of particle size on insertion reactions. a case for anatase
Li
, pp. 4323-4327.
75. Armstrong, A. R., Armstrong, G., Canales-Garcia, J. R., and Bruce, P. G.
(2005). Lithium-ion intercalation into TiO
TiO
J. Am. Chem. Soc.
,
129
x
2.
-B nanowires.
Adv. Mat.
,
2
, pp. 862-865.
76. Zhou, Y.-K., Cao, L., Zhang, F.-B., He, B.-L., and Li, H.-L. (2003). Lithium
insertion into TiO
17
nanotube prepared by the hydrothermal process.
J. Electrochem. Soc.
2
, pp. A1246-A1249.
77. Li, J., Tang, Z., and Zhang, Z. (2005). Preparation and novel lithium
intercalation properties of titanium oxide nanotubes.
,
150
Electrochem.
, pp. A316-A319.
78. Wang, Y., Wu, M., and Zhang W. F. (2008). Preparation and
electrochemical characterization of TiO
Solid-State Lett.
,
8
nanowires as an electrode
2
material for lithium-ion batteries.
Electrochim. Acta
,
53
, pp. 7863-
7868.
79. Erjavec, B., Dominko, R., Umek, P., Sturm, S., Pintar, A., and Gaberscek,
M. (2009). Tailoring nanostructured TiO
for high power Li-ion
2
, pp. 869-874.
80. Huang, H., Zhang, W. K., Gan, X. P., Wang, C., and Zhang, L. (2007).
Electrochemical
batteries.
J. Power Sources
,
189
/carbon nanotubes
nanocomposite as anode materials for lithium-ion batteries.
investigation
of
TiO
2
Mater.
Lett.
,
61
, pp. 296-299.
81. Kavan,
L.,
Grätzel,
M.,
Rathousky,
J.,
and
Zukal,
A.
(1996).
Nanocrystalline TiO
(anatase) electrodes: Surface morphology,
adsorption, and electrochemical properties.
2
J. Electrochem. Soc.
143
,
pp. 394-400.
82. Koudriachova, M. V., Harrison, N. M., and de Leeuw, S. W. (2002).
Density-functional simulations of lithium intercalation in rutile.
Phys. Rev. B: Condens. Matter
, pp. 235423.
83. Nuspl, G., Yoshizawa, K., and Yamabe, T. (1997). Lithium intercalation
in TiO
,
65
, pp. 2529-2536.
84. Kim, J., and Cho, J. (2007). Rate characteristics of anatase TiO
modifications.
J. Mater. Chem.,
7
2
2
nanotubes and nanorods for lithium battery anode materials at
room temperature.
J. Electrochem. Soc.
,
154
, pp. A542-A546.
 
Search WWH ::




Custom Search