Effects of electrolyte additives in lithium-ion secondary batteries and safety evaluation.
S30905
What are the types and functions of electrolyte additives based on the comparison of battery characteristics due to differences in electrolyte systems?
★Effects of electrolyte additive on conductivity (ionic conductivity) ☆What are the effects of the oxidative decomposition of electrolyte additives? Methods for improving charge and discharge characteristics! ★What are the issues with existing overcharge prevention agents? 【Instructor】 Shinichi Tobishima, Professor, Graduate School of Engineering, Gunma University, Major in Applied Chemistry and Biochemistry 【Venue】 Tokyo Chuo Ward Industrial Hall, 4th Floor, Meeting Room 2 [Tokyo, Chuo Ward] 【Date and Time】 September 24, 2013 (Tuesday) 13:30-16:30
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basic information
1. Electrolyte additive 2. Electrolyte for lithium batteries 3. Conductivity 4. Surface treatment 5. Stability 6. Flame retardancy 7. Overcharge prevention agent
Price information
For 2 people: 53,550 yen ⇒ Special service price 46,200 yen (including tax and text costs)
Price range
P2
Delivery Time
P2
Applications/Examples of results
**Program** 1. Introduction 1.1 Battery characteristics and the properties required for electrolytes 1.2 Technical map of electrolyte materials for LIBs (1) 2. Basic properties required for electrolytes in lithium batteries 3. Interaction between electrolytes and battery constituent materials 4. Types of electrolytes and additives for lithium-ion batteries 4.1 Comparison of battery characteristics based on differences in electrolyte systems 4.2 Types and functions of electrolyte additives 5. Effects of electrolyte additives 5.1 Effects of electrolyte additives on conductivity (ionic conductivity) 5.2 Effects of electrolyte additives on stability 5.3 Anode surface treatment additives 5.3.1 Anode surface treatment 5.3.2 Electrolytes for high-voltage lithium batteries 5.4 Cathode surface modification additives 5.4.1 Effects of oxidative decomposition of electrolyte additives 5.4.2 Improvement of charge-discharge characteristics 5.5 Flame retardancy of electrolytes 5.6 Overcharge inhibitors 5.6.1 Issues with existing overcharge inhibitors 5.6.2 Overcharge inhibitor properties of allyl adamantane 5.6.3 Design 6. Safety evaluation 7. Recent research trends 8. Conclusion **[Q&A and Business Card Exchange]**
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