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Lithium-titanium disulfide system

Dioxolane-l, 2-dimethoxyethane-Li2 B1()C11() exhibited chemical stability towards the components of a lithium-titanium disulfide cell and showed promise as an electrolyte in such cells [98], Among various systems composed of an ether-based solvent and a lithium salt, THF-LiAsF6 was the least reactive to lithium at elevated temperature and gave the best cycling efficiency [99, 100], Tetrahydrofu-ran-diethyl ether-LiAsF(i afforded lithium electrode cycling efficiency in excess of 98% [101],... [Pg.58]

The system examined in the French-Canadian Project considers the following sequence Li/(PEO)g LiC104/TiS2+PEO, C, which is based on the intercalation of lithium into titanium disulfide lattice. The process implies the movement of Li+ ions, this again making advisable the use of an electrolyte with an essentially pirre LP transport. This condition is not reahzed in (PEO)g LiC104, where ty+ is about... [Pg.387]


See other pages where Lithium-titanium disulfide system is mentioned: [Pg.58]    [Pg.58]    [Pg.82]    [Pg.58]    [Pg.58]    [Pg.82]    [Pg.35]    [Pg.1040]    [Pg.36]   
See also in sourсe #XX -- [ Pg.79 ]




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