Biomedical Engineering Reference
In-Depth Information
25. Wang, Q.,
(2002). Novel spherical microporous carbon as anode
material for Li-ion batteries.
et al.
: pp. 43-50.
26. Hu, J., Li, H., and Huang, X. (2007). Electrochemical behavior and
microstructure variation of hard carbon nano-spherules as anode
material for Li-ion batteries.
Solid State Ionics
,
152-153
Solid State Ionics
,
178
(3-4): pp.
265-271.
27. Sun, X., and Li, Y. (2004). Colloidal carbon spheres and their core/
shell structures with noble-metal nanoparticles.
Angew. Chem. Int.
(5): pp. 597-601.
28. Cui, X., Antonietti, M., and Yu, S.-H. (2006). Structural effects of
iron oxide nanoparticles and iron ions on the hydrothermal
carbonization of starch and rice carbohydrates.
Ed.
,
43
Small
,
2
(6): pp.
756-759.
29. Huggins, R. A. (1999). Lithium alloy negative electrodes.
J. Power
Sources
,
81-82
: pp. 13-19.
30. Zhang, W.-M.,
(2008). Tin-nanoparticles encapsulated in
elastic hollow carbon spheres for high-performance anode material
in lithium-Ion batteries.
et al.
Adv. Mater.
,
20
(6): pp. 1160-1165.
31. Derrien, G.,
(2007). Nanostructured Sn-C composite as an
advanced anode material in high-performance lithium-ion batteries.
Adv. Mater.
et al.
-
,
19
(17): pp. 2336
2340.
32. Poizot, P.,
Nano-sized transition-metal oxides as negative-
electrode materials for lithium-ion batteries. Nature, 2000.
et al.
407
: pp.
496-499
33. Li, H., Balaya, P., and Maier, J. (2004). Li-storage via heterogeneous
reaction in selected binary metal fluorides and oxides.
J. Electrochem. Soc.
,
151
(11): pp. A1878-A1885
34. Guo, Y. G.,
(2007). Superior electrode performance of
nanostructured mesoporous Tio2 (anatase) through efficient
hierarchical mixed.
et al.
(16): pp. 2087-2091.
35. Guyomard, D. (2000). Advanced cathode materials for lithium
batteries
Adv. Mater.
,
19
New Trends in
Electrochemical Technology. Volume 1: Energy Storage Systems for
Electronics
.
In Osaka, T., and Datta, M. (Eds.)
. Amsterdam: Gordon and Breach. pp. 253-350.
36. Antolini, E. (2004). LiCoO
: formation, structure, lithium and
2
oxygen
nonstoichiometry,
electrochemical
behaviour
and
transport properties
.
Solid State Ionics
,
170
(3-4): pp. 159-171.
 
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