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http://dx.doi.org/10.5229/JKES.2002.5.4.173

The Initial Irreversible Capacity of the Lithium Ion Battery System Using by the Gradual Control of State of Charge  

Doh, Chil-Hoon (Battery Research Group, Korea Electrotechnology Research Institute)
Choi, Sang-Jin (Battery Research Group, Korea Electrotechnology Research Institute)
Jin, Bong-Soo (Battery Research Group, Korea Electrotechnology Research Institute)
Moon, Seong-In (Battery Research Group, Korea Electrotechnology Research Institute)
Yun, Mun-Soo (Battery Research Group, Korea Electrotechnology Research Institute)
Publication Information
Journal of the Korean Electrochemical Society / v.5, no.4, 2002 , pp. 173-177 More about this Journal
Abstract
Electrochemical characteristics of a graphite/lithium and a $LiCoO_2/lithium$ half cell and a $graphite/LiCoO_2$ full cell were analyzed using a GCSOC (gradual control test of the state of charge) technique. The IIE (initial intercalation coulombic efficiency), which represents lithium intercalation property of the electrode material, and the $lIC_s$ (initial irreversible capacity by the surface), which represents irreversible reaction between the electrode surface and the electrolyte were obtained from the GCSOC analysis. Linear-fittable capacity ranges of IIE of graphite and $LiCoO_2$ electrodes were 370 and 150 mAh/g, respectively, based on material weight. The value of lIE for graphite and $LiCoO_2$ electrodes were $93-94\%$ and $94-95\%$, respectively. The value of IICs for graphite and $LiCoO_2$ electrodes were 15-17 mAh/g and 0.3-1.7 mAh/g, respectively. The value of IIE for $graphite/LiCoO_2$ full cell, used GX25 and DJG311 as a graphite, was $89-90\%$ that lower than that for the half cells. Parameters of IIE and IICs can also be used to represent not only half cell but also full cell.
Keywords
Lithium battery; Initial irreversible capacity; Initial intercalation coulombic efficiency; Initial irreversible specific capacity at the surface; Latent capacity.;
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