CN101000960A - Composite lithium titanate electrode material and preparation method thereof - Google Patents
Composite lithium titanate electrode material and preparation method thereof Download PDFInfo
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Abstract
Description
Embodiment | Lithium salts | The coating-doping material | Prilling process | Specific discharge capacity (mAh/g) | Coulombic efficiency (%) first | 50 circulation volume conservation rates (%) | |
1 | Lithium carbonate | Nano graphite powder 5% | The transient state drying | 172.0 | 95.9 | 97.5 | |
2 | | Glucose | 10% | The transient state drying | 165.6 | 95.6 | 91.2 |
3 | Lithium carbonate | Nano graphite powder 1% | The transient state drying | 158.0 | 94.8 | 93.4 | |
4 | Lithium hydroxide | Nano graphite powder 4% | The transient state drying | 154.2 | 96.1 | 92.9 | |
5 | Lithium hydroxide | Nano graphite powder 4% | The transient state drying | 166.4 | 94.4 | 98.0 | |
6 | Lithium carbonate | Super-P5% | The transient state drying | 166.2 | 96.1 | 95.5 | |
7 | Lithium carbonate | Aluminium oxide 2% | The transient state drying | 156.1 | 94.5 | 93.7 | |
8 | Lithium carbonate | |
The transient state drying | 156.0 | 96.8 | 94.9 | |
Comparative Examples 1 | Lithium carbonate | Do not mix | The transient state drying | 149.6 | 92.6 | 87.8 | |
Comparative Examples 2 | Lithium carbonate | Nano graphite powder 5% | No transient state drying | 145.1 | 91.6 | 82.7 |
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