★Types, functions, mechanisms of action, usage methods, processing effects, and applications ★Improvement of adhesion at the interface between inorganic components (fillers and fine particles) and organic components (polymers)!
Lecturer: Professor Yamada Yasuji, Department of Biomolecular Engineering, Graduate School of Craft Science, Center for Creative Collaboration, Kyoto Institute of Technology Target Audience: Engineers, researchers, and relevant departments facing challenges with silane coupling agents Venue: Kawasaki City International Exchange Center, 2nd Floor, Conference Room 4 [Kanagawa, Kawasaki] 10-minute walk from "Motosumiyoshi Station" on the Tokyu Meguro Line Date and Time: November 11, 2011 (Friday) 10:30 AM - 4:30 PM Capacity: 30 participants. 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 participants per company. *Limited to Tech-Zone members who apply by October 28. Membership registration is free. *After October 28, the [Regular Price] will be 49,350 yen (tax included, including text costs) for up to 2 participants per company.
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**Course Objectives and Aims** Silane coupling agents are essential compounds for improving adhesion at the interface between inorganic components (fillers and fine particles) and organic components (polymers), as well as enhancing the compatibility of composite materials. In recent years, there has been active research and development of periodical-inorganic nanocomposite/nanohybrid materials using sol-gel methods and inorganic fine particles, where silane coupling agents play a crucial role. This course will provide an overview of the types, functions, mechanisms of action, usage methods, treatment effects, surface analysis and characterization methods, and applications of silane coupling agents, covering the fundamentals to applications.
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P2
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P2
Applications/Examples of results
1. Overview of Silane Coupling Agents 1-1 What are Silane Coupling Agents 1-2 Types of Silane Coupling Agents 1-3 Functions of Silane Coupling Agents 1-4 How to Use Silane Coupling Agents 1) Reaction Conditions (Solvent, Temperature, Time, Concentration, Moisture, pH) 2) Amount of Silane Coupling Agent Used 2. Reactions of Silane Coupling Agents and Mechanism of Interface Layer Formation 2-1 Main Reactions of Silane Coupling Agents 2-2 Hydrolysis Mechanism 2-3 Hydrolysis Reaction and Condensation Reaction 2-4 Reactivity (Reaction Rate) 2-5 Effect of pH on Hydrolysis and Condensation Reactions 2-6 Mechanism of Action of Silane Coupling Agents 3. Surface Characterization - Analysis Methods for Reaction State and Surface Condition of Silane Coupling Agents 3-1 Analysis Methods for Reactions and Surfaces of Silane Coupling Agents (GC, LC, FT-IR, TG-DTA, NMR, DLS, XPS, AFM, SEM, TEM, etc.) 3-2 Analysis and Evaluation Methods for Reaction State and Coverage Rate 3-3 Analysis and Evaluation Methods for Surface Condition 4. Effective Use of Silane Coupling Agents
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