Development of conductive polymer technology and composite technology with other materials, energy devices.
S10301
Recent technological development trends in the synthesis, structural control, and pattern formation of conductive polymers!
**Course Objectives and Goals** There have been a series of announcements regarding the commercialization of organic EL and white lighting using organic semiconductors. Additionally, the development of organic transistors and organic thin-film solar cells has progressed significantly, indicating the arrival of a new era of organic electronics. Among organic semiconductors, conductive polymers are actively being developed as promising materials for printable electronics due to their ability to create large-area devices at low cost through printing methods. This seminar will first introduce recent technological developments related to the synthesis, structural control, and pattern formation of conductive polymers. Following that, it will discuss the development trends and challenges of energy devices based on the results obtained from these technological advancements. In addition to solar cells, supercapacitors, and actuators, which have been under development for some time, the development of hydrogen generation materials and thermoelectric conversion materials through the combination with other materials has begun, and the current status of these new applications will also be presented.
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basic information
≪Instructor≫ Kobayashi Engineering Office Director, Dr. Yoshio Kobayashi ≪Date≫ March 18, 2011 (Friday) 12:30-16:30 ≪Venue≫ Kawasaki City International Exchange Center, Conference Room 1
Price information
49,350 yen (including tax and text fees) for up to 2 people from 1 company. *New members who apply for the first time by March 8 will receive an early bird discount price of 44,100 yen.
Price range
P2
Delivery Time
P2
Applications/Examples of results
1. Conductive Polymer Conducting Mechanism 2. Recent Technological Development Trends in Conductive Polymers 2.1 Synthesis of Conductive Polymers 2.1.1 Narrow Band Gap (Donor-Acceptor) Copolymers 2.1.2 High Conductivity PEDOT 2.1.3 High Conductivity Polyaniline 2.1.4 Pseudo-Living Polymerization 2.1.5 Gas Phase Polymerization 2.2 Structural Control of Conductive Polymers 2.3 Pattern Formation of Conductive Polymers 3. Applications of Conductive Polymers in Energy Devices and Composite Technologies with Other Materials 3.1 Organic Thin Film Solar Cells 3.2 Supercapacitors 3.3 Actuators 3.4 Hydrogen Generation Materials 3.5 Thermoelectric Conversion Materials [Q&A and Business Card Exchange]
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