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Li-ion secondary batteries

Li-ion secondary batteries Li(Ni,Co,Mn)02 surface coating interfacial impedance. [Pg.510]

Endo M, Nishimura Y, Takahashi T, Takeuchi K, Dresselhaus MS. Lithium storage behavior for various kinds of carbon anodes in Li ion secondary battery. J Phys Chem Solids 1996 57 725-728. [Pg.499]

Kang YM, Park MS, Lee JY, Liu HK. Si-Cu/carbon composites with a core-shell structure for Li-ion secondary battery. Carbon 2007 45 1928-1933. [Pg.507]

The advancement of both batteries and capacitors, two types of EES devices, requires tailored, multifunctional materials whose structure and properties at nanoscale dimensions are thoroughly understood. To underscore this point, the study of electrochemistry at the nanoscale has already broadened the range of materials that can be used in Li-ion secondary batteries. In fact, materials that were previously excluded from consideration under the classical inserlion/de-insertion mechanism are now being reevaluated because, as nanoscale materials, they possess beneficial electrochemical properties (4). [Pg.520]

An electrode binder for lithium-ion (Li-Ion) secondary batteries is used either to bind active material layers or between active material layers and collectors. The binder in general is preferably electrochemically inert. Although the binder is not essential for the battery, it has an important role in the facilitation of producing batteries and in their properties. Therefore, the binder is said to be one of the major elements of the battery. [Pg.163]

M. Yoshio, A. Kozawa, Li-ion Secondary Battery (2nd ed.). The Nikkan Kogyo Sliinbun, Osaka, 2000. [Pg.180]

Ein-Eli, Y. Markovsky, B. Aurbach, D. Carmeli, Y. Yamin, H. Luski, S. The dependence of the performance of Li-C intercalation anodes for Li-ion secondary batteries on the electrolyte solution composition, Electrochim. Acta 1994,39, 2559-2569. [Pg.280]

Insertion Compounds for Li-Ion Secondary Batteries Anodes with LC-Ion Liquid Electrolytes... [Pg.71]

Yu H, Zhang X, Jalbout AF, Yan X, Pan X, Xie H, Wang R (2008) High-rate characteristics of novel anode Li4Ti50i2/polyacene materials for Li-ion secondary batteries. Electrochim Acta 53 4200... [Pg.116]

Gotoh K, Maeda M, Nagai A, Goto A, Tansho M, Hashi K, Shimizu T, Ishida H (2(X)6) Properties of a novel hard-carhon optimized to large size Li ion secondary battery studied by Li-7 NMR. J Power Sources 162(2) 1322-1328... [Pg.282]

Exercise 2.1.- A mobile telephone is supplied by a Li-ion secondary battery whose capacity (in the fi esh state) is 1200 mAh. The technology used means that this capacity is practically unchanged regardless of the discharge current rate. Standby mode consumes 1.7 mA. Conversation mode... [Pg.38]

Figure 2.15. Measurement of the impedance of a Li-ion secondary battery with nominal capacity of 10 Ah... Figure 2.15. Measurement of the impedance of a Li-ion secondary battery with nominal capacity of 10 Ah...
Gotoh, K., Maeda, M., Nagai, A., Goto, A., Tansho, M., Hashi, K., Shimizu, T, and Ishida, H. Properties of a novel hard-carbon optimized to large size Li ion secondary battery studied by Li NMR. dPgwerSaurc 2006 162 1322-1328. [Pg.164]

The obtained carbon-coated metal showed the advantageous features for a fuel cell separator and a current collector of a Li-ion secondary battery. [Pg.525]

Ihm DW, Noh JG, Kim JY (2002) Effect of polymer blending and drawing conditions on proptaties of polyethylene separator uepared for Li-ion secondary battery. J Power Sources 109 388-393... [Pg.351]

Kim JH, Myung ST, Sun YK (2004) Molten salt synthesis of LLNio(5Mni(504 spinel for 5 V class cathode material of Li-ion secondary battery. Electrochim Acta 49 219-227... [Pg.502]

Kim, K Park, J.H. Doo, S.G. Kim, T. (2010). Effect of Oxidation on Li-Ion Secondary Battery with Non-Stoichiometric Silicon Oxide (SiOx) Nanoparticles Generated in Cold Plasma. Thin Solid Films, Vol. 518, pp. 6547-6549 Konuma, M. (1992). Film Deposition by Plasma Techniques, Springer, ISBN 0-38754-057-1, Berlin... [Pg.134]

In this chapter, Sn-based anodes for Li-ion secondary batteries were discussed mainly to improve cycle properties in terms of suppression... [Pg.135]

Kim JM, Lee G, Kim BH, Huh YS, Lee GW, Kim HJ (2012) Ultrasound-assisted synthesis of Li-rich mesoporous LiMn204 nanospheres for enhancing the electrochemical performance in Li-ion secondary batteries. Ultrason Sonochem 19 627-631... [Pg.195]

Jang H, Suzuki S, Miyayama M (2012) Synthesis of open tunnel-stmctured Ti02(B) by nanosheets processes and its electrode properties for Li-ion secondary batteries. J Power Sourc 203 97-102... [Pg.413]


See other pages where Li-ion secondary batteries is mentioned: [Pg.497]    [Pg.498]    [Pg.486]    [Pg.301]    [Pg.69]    [Pg.132]   
See also in sourсe #XX -- [ Pg.505 ]

See also in sourсe #XX -- [ Pg.505 ]

See also in sourсe #XX -- [ Pg.505 ]




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