Electrochemical Measurement Methods: From Electrode Surface Modification to Analysis of Lithium-Ion Batteries
You can understand the basics to applications of electrochemical measurement methods!! Those interested in improving characteristics and safety measures of lithium secondary batteries are also welcome!!
Lecturer Professor Noboru Koyama, Department of Applied Molecular Chemistry, Faculty of Engineering, Tokyo University of Agriculture and Technology Target Audience: Technicians, researchers, and planners interested in electrochemical measurements such as batteries, electrodes, electrolytes, and electrolysis. Venue: Kawasaki City Educational and Cultural Center, Room 1【Kanagawa, Kawasaki】 10-minute walk from JR and Keikyu Line "Kawasaki" Station; 5 minutes by bus. Date and Time: November 30, 2011 (Wednesday) 10:30 AM - 4:30 PM Capacity: 30 people. *Registration will close once full. Please apply early. Participation Fee: [Early Bird Discount Price] 46,200 yen per person (tax included, including text costs; lunch fee separate) *Limited to Tech-Zone members who apply by November 16. Membership registration is free. *After November 16, the [Regular Price] will be 49,350 yen per person (tax included, including text costs; lunch fee separate). ◆When applying for the early bird discount, please select “1 person (early discount)” or “2 people (early discount)” in the number registration.
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basic information
Like lithium-ion batteries, which are expected to expand from mobile device applications to automotive applications, devices related to the field of electrochemistry are anticipated to further broaden, with research and development becoming more active in the future. Therefore, in order to make it easier for stakeholders from newly entered companies in this field and beginners who have just started research to understand, we will cover several topics in this field and provide a thorough explanation of related matters from the basics. We will also introduce the latest development trends and clarify research issues. Explanations of evaluation methods such as impedance and cyclic voltammetry will be provided, addressing both foundational concepts and cutting-edge research problems. In particular, regarding lithium-ion batteries, we will also discuss performance improvements and safety measures. Additionally, after the lecture, we will answer questions from participants regarding the lecture content to the best of our ability.
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P2
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Applications/Examples of results
1. What is an electrochemical reaction? a. Oxidation-reduction potential, Nernst equation, electric double layer b. Electrode reaction, overvoltage, polarization c. Electrode reaction rate d. Various evaluation methods d-1. Cyclic voltammetry (CV) d-2. Various pulse methods d-3. Alternating current impedance (ACIm) 2. Molecular design of electrode surfaces a. Chemical modification methods b. Analysis from CV responses 3. Electron transfer reactions in thin films a. From the solvation layer b. From the solid layer 4. "In-situ" nanogram measurement using electrochemical quartz crystal microbalance electrodes a. Principles and applications b. Application to electrolysis and dissolution 5. Polymer gel chemistry a. Thermal transfer properties b. Enzyme immobilization and sensors c. Electron transfer reactions d. Polymer gel electrolytes 6. Electrochemical polymerization reactions and conductive polymers a. Reaction mechanisms and basic structures 7. Electrochemical luminescence (ECL) medical sensors Using chemically modified magnetic microparticles as an example 8. High-performance lithium batteries a. Fundamentals of electrode and cell property evaluation b. Introduction to development trends of various constituent materials and components c. Interface control, degradation evaluation, and safety measures
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