1 |
Electro-optical measurements of lithium intercalation/de-intercalation at graphite anode surfaces. Manka D, Ivers-Tiffee E Electrochimica Acta, 186, 642, 2015 |
2 |
A novel dimethyl"sulfoxide/1,3-dioxolane based electrolyte for lithium/carbon fluorides batteries with a high discharge voltage plateau Pang CK, Ding F, Sun WB, Liu JQ, Hao MM, Wang Y, Liu XJ, Xu Q Electrochimica Acta, 174, 230, 2015 |
3 |
Highly Robust Lithium Ion Battery Anodes from Lignin: An Abundant, Renewable, and Low-Cost Material Tenhaeff WE, Rios O, More K, McGuire MA Advanced Functional Materials, 24(1), 86, 2014 |
4 |
Lithium intercalation into single-walled carbon nanotubes network electrode: Storage mechanisms and impurity effects Montoro LA, Matsubara EY, Rosolen JM Journal of Power Sources, 257, 205, 2014 |
5 |
Development of high energy density small flat spiral cells and battery pack based on lithium/carbon monofluoride (Li/CFx) Eweka EI, Giwa CO, Mepsted GO, Green K, Scattergood D Journal of Power Sources, 162(2), 841, 2006 |
6 |
Mathematical modeling of high-power-density insertion electrodes for lithium ion batteries Verbrugge MW, Baker DR, Koch BJ Journal of Power Sources, 110(2), 295, 2002 |
7 |
Influence of solvent species on the charge-discharge characteristics of a natural graphite electrode Fujimoto M, Shoji Y, Kida Y, Ohshita R, Nohma T, Nishio K Journal of Power Sources, 72(2), 226, 1998 |
8 |
In-Situ Raman-Study on Electrochemical Li-Intercalation into Graphite Inaba M, Yoshida H, Ogumi Z, Abe T, Mizutani Y, Asano M Journal of the Electrochemical Society, 142(1), 20, 1995 |
9 |
Orthorhombic Limno2 as a High-Capacity Cathode for Li-Ion Cells Koetschau I, Richard MN, Dahn JR, Soupart JB, Rousche JC Journal of the Electrochemical Society, 142(9), 2906, 1995 |
10 |
The Dependence of the Performance of Li-C Intercalation Anodes for Li-Ion Secondary Batteries on the Electrolyte Solution Composition Eineli Y, Markovsky B, Aurbach D, Carmeli Y, Yamin H, Luski S Electrochimica Acta, 39(17), 2559, 1994 |