Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6610294 | Electrochimica Acta | 2015 | 7 Pages |
Abstract
Comprehensively considering the improvement of cycle life and the capacity decreased, Li/M = 1.16 is chosen as right lithium rich ingredients used to co-dope with Mo element. For the Mo/M = 0.02, Li/M = 1.16 sample, the discharge capability is best, which is 126.06 mAh gâ1 at 750 mA gâ1(5C) of discharge current density and at room temperature higher than 118.32 mAh gâ1, that of the Li/M = 1.16 sample without Mo. At the same current density, the best discharge capacity at low temperature of â30 °C for the sample Mo/M = 0.02, Li/M = 1.16 is 65.41 mAh gâ1 higher than 58.18 mAh gâ1 of Li/M = 1.16 sample without Mo. Through the Li and Mo co-doping, unit cell volume V shows increasing trend and may be one of the most basic dominant factor about the improvement of low temperature electrochemical performance. Because of larger specific surface area and less median radius D50, the samples with Li and Mo co-doping has a big reaction activity, which is another important reason. Impedance changes could better explain the improvement trend of high rate discharge capability of cathode samples with Mo and Li co-doping at high current density.
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Chemical Engineering (General)
Authors
Xuedong Wei, Yinzhe Ren,