Li-ion batareyalari turlari va ularda kechadigan elektrokimyoviy jarayonlar


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Li-ion batareyalari turlari va ularda kechadigan elektrokimyoviy

SP

SE

SF

LS

CS

PF

Lithium Cobalt Oxide

L

H

L

L

L

M

Lithium Manganese Oxide

M

M

M

L

L

L

Lithium Nickel Manganese Cobalt Oxide

M

H

M

M

L

M

Lithium Iron Phosphate

H

L

H

H

L

M

Lithium Nickel Cobalt Aluminum Oxide

M

H

L

M

M

M






















Lithium Titanate

M

L

H

H

H

H




[1] Yoshio, M., Brodd, R. J., and Kozawa, A. Lithium-Ion Batteries. Springer, 1 edition, (2009).
[2] Tarascon, J. M. and Armand, M. Nature 414(6861), 359–367 (2001).
[3] Scrosati, B. and Garche, J. Journal of Power Sources 195(9), 2419–2430 (2010)
[4] Zubi, G., Dufo-López, R., Carvalho, M. and Pasaoglu, G., 2018. The lithium-ion battery: State of the art and future perspectives. Renewable and Sustainable Energy Reviews89, pp.292-308.
[5] Etacheri, V., Marom, R., Elazari, R., Salitra, G. and Aurbach, D., 2011. Challenges in the development of advanced Li-ion batteries: a review. Energy & Environmental Science4(9), pp.3243-3262.
[4] Ohzuku, T. and Brodd, R. J. Journal of Power Sources 174(2), 449–456 (2007)
[5] Rahman, M.A., Wang, X. and Wen, C., 2013. High energy density metal-air batteries: a review. Journal of the Electrochemical Society160(10), p.A1759.
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