Explaining the interlayer distance control technology and composite anodes based on the essential characteristics of graphene anodes and lithium storage properties in lithium-ion batteries.
Lecturer Professor (Doctor of Engineering) Itaru Honma, Tohoku University, Institute of Multidisciplinary Material Science Target Audience: Engineers, researchers, responsible departments, and beginners interested in graphene as a material for lithium-ion batteries, capacitors, and fuel cells. Venue: Kawasaki City Educational and Cultural Center, Room 1 [Kanagawa, Kawasaki] 12-minute walk from JR and Keikyu "Kawasaki Station" Date and Time: September 1, 2011 (Thursday) 15:00-18:30 Capacity: 30 people *Registration will close once full. Please apply early. Participation Fee: [Early Bird Discount Price] 46,200 yen (tax included, including text costs) for up to 2 people from one company *Limited to Tech-Zone members who apply by August 18. Membership registration is free. *After August 18, the [Regular Price] will be 49,350 yen (tax included, including text costs) for up to 2 people from one company. ◆If 3 people from the same organization apply, the fee will be 69,300 yen.
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**Lecture Summary** Graphene, which became the research theme of the 2010 Nobel Prize in Physics, not only possesses excellent electronic properties but also exhibits outstanding structural and electrochemical properties that are unprecedented. This lecture will summarize the fundamental properties of graphene and its potential applications in lithium batteries and capacitor electrodes, which have garnered significant interest in both industry and academia in recent years. Graphene is expected to be applied in lithium batteries, capacitors, and even fuel cells due to its high electronic conductivity, large specific surface area, and excellent thermal and electrochemical stability. This lecture will provide an overview of the application of graphene in these cutting-edge battery technologies, from the basics to devices.
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1. Fundamental Physical Properties of Graphene 1-1 Band Structure and Electronic Properties 1-2 Phonon Dispersion and Raman Spectrum 2. Chemical Synthesis of Graphene 2-1 Hummers Method 2-2 Other Solution Synthesis Methods 3. Nanostructural Analysis of Graphene 3-1 Monolayer Graphene and Multilayer Graphene 3-2 Armchair Edge and Zigzag Edge 3-3 Nanographene 4. Lithium Battery Electrode Characteristics of Graphene 4-1 Lithium Anode Characteristics of Graphene 4-2 Composite Anodes of Graphene and Nanoparticles 4-3 Composite Anodes of Graphene and Carbon Nanotubes 4-4 Interlayer Distance Control of Graphene and Lithium Storage Characteristics 5. Capacitor Characteristics of Graphene 5-1 Electric Double Layer Characteristics of Graphene 5-2 Electric Double Layer Capacitors of Graphene and Ionic Liquids 5-3 Composite Capacitor Electrodes of Graphene and Nanoparticles 5-4 Composite Capacitor Electrodes of Graphene and Conductive Polymers [Q&A and Business Card Exchange]
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