06 Electrical power supply and utilization (scientific, technical) increases with increasing sweep rate and reaches up to 90% for Li+ and 65% for C104-ions at a sweep rate of 40 mV s-'. The formation of a passive film decreases the IDE during the first intercalation/de-intercalation cycle. The open
99/02598 Manufacture of carbon materials for lithium ion secondary battery anodes
- Publisher
- Elsevier Science
- Year
- 1999
- Weight
- 208 KB
- Volume
- 40
- Category
- Article
- ISSN
- 0140-6701
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โฆ Synopsis
Electrical power supply and utilization (scientific, technical)
increases with increasing sweep rate and reaches up to 90% for Li+ and 65% for C104-ions at a sweep rate of 40 mV s-'. The formation of a passive film decreases the IDE during the first intercalation/de-intercalation
cycle. The open-circuit potential for a battery assembly involving these two electrodes is in the range 3.8 to 4.0 V.
๐ SIMILAR VOLUMES
06 Electrical power supply and utilization (scientific, technical) the polarization potential is built up at the interface. The high dielectric constant of ferroelectric films also enhances dipole polarization, substantially improving the Hz gas-induced polarization potential. The results obtained f
06 Electrical power supply and utilization (scientific, technical) increases with increasing sweep rate and reaches up to 90% for Li+ and 65% for C104-ions at a sweep rate of 40 mV s-'. The formation of a passive film decreases the IDE during the first intercalation/de-intercalation cycle. The open
06 Electrical power supply and utilization (scientific, technical) increases with increasing sweep rate and reaches up to 90% for Li+ and 65% for C104-ions at a sweep rate of 40 mV s-'. The formation of a passive film decreases the IDE during the first intercalation/de-intercalation cycle. The open