Technologies for improving brightness, enhancing light extraction efficiency, and increasing reliability in organic EL.
Increase reliability and prevent deterioration! The key technology for that is sealing technology! What are the latest sealing methods, requirements for sealing materials, and sealing with new glass seals?
Part 1: Ryuou Mori, Nagoya University Graduate School Part 2: Dr. Philipp Wellmann, Novaled AG Japan Part 3: Shintaro Otani, Hosen Tech Co., Ltd. Part 4: Shigeru Koshibe, iPack Co., Ltd. Part 5: Tomoyuki Hase, Research and Development Department, Yamada Chemical Industry Co., Ltd. Target Audience: Personnel interested in organic EL and organic EL materials Venue: Tokyo Chuo Ward Industrial Hall, 4th Floor, Meeting Room 1 [Tokyo, Chuo Ward] Date and Time: November 28, 2011 (Monday) 10:00 AM - 5:45 PM Capacity: 30 people *Please apply early as there may be a rush of applications. Participation Fee: [Early Bird Discount Price] 56,700 yen (tax included, including text fees) for up to 2 people per company *Limited to Tech-Zone members who apply by November 14. Membership registration is free. *After November 14, the [Regular Price] will be 59,850 yen (tax included, including text fees) for up to 2 people per company. ◆ When applying for the early bird discount, please select "1 person (early discount)" or "2 people (early discount)" in the number registration. ◆ If 3 people from the same corporation apply, the fee will be 75,600 yen.
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basic information
**Lecture 1: Purpose of the Lecture** In organic EL devices, the hole injection layer not only facilitates hole injection but also significantly contributes to the device's high efficiency and stability. Additionally, hole transport materials are the components with the lowest glass transition temperature among the materials that make up organic EL devices, and their stabilization has led to higher reliability. This seminar will discuss these aspects. **Lecture 5: Purpose of the Lecture** Organic electroluminescent devices are being considered for various applications such as displays and lighting due to their characteristics; however, the reality is that there are many challenges, including efficiency and lifespan. Further development is necessary not only for the device structure but also for the luminescent materials. This lecture will focus on introducing new material developments aimed at improving luminous efficiency.
Price information
S11124
Price range
P2
Delivery Time
P2
Applications/Examples of results
Part 1: Improvement of Hole Injection and Transport Layers for High Performance in Organic EL Devices Part 2: Advanced High Performance OLEDs Using PIN Technology Part 3: Evaluation Techniques for the Permeability and Barrier Properties of Barrier Films and Seals for Organic EL 2. Measurement Principles of the Isobaric Method and Calibration of Barrier Values 3. Evaluation Methods for Water Vapor Barrier Properties of Ultra High Barrier Films and Coatings 4. Relationship Between Speeding Up Barrier Property Evaluation and Measurement Accuracy 5. Important Points to Know in Film Measurement 6. Introduction to Gas Barrier Testing in Final Product Shapes - PET Bottles, Pudding Containers, PTP, Solar Cell Panels Part 4: Technology and Reliability Improvement of Sealing Materials for Organic EL 1. Overview of Organic EL: Introduction to Organic EL Devices 2. Sealing Technology for Organic EL: Overview of Organic EL Devices 3. Challenges of Resin Sealing Type Organic EL: Towards Realization of Resin Sealing 4. Challenges of Glass Sealing Type Organic EL: Towards Realization of Glass Sealing 5. Challenges of Organic EL Sealing Materials: Towards Improving the Reliability of Sealing Materials 6. Competing Technologies: Competitors of Organic EL Part 5: Development of Coated Polymer Light Emitting Devices (PLED) Using Fluorescent Dyes
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