Sumitomo Chemical Joins Holst Centre's Research Program for OLED

Sumitomo Chemical has taken part in Holst Centre's shared research program on Printed Organic Lighting and Signage, to develop multi-layer solution processes for high-efficiency OLEDs.
 
OLEDs are revolutionary large-area light sources that could cut lighting-related energy use by 50-90% and enable unique lighting applications. They are manufactured by depositing numerous thin layers of materials onto glass substrates or flexible plastic foils. Today's highest-efficiency OLEDs are made using evaporative processes in vacuum conditions. Switching to atmospheric-pressure solution-based processes could reduce the cost of OLED manufacturing by removing the need for expensive vacuum equipment and reducing the wastage of costly OLED materials.
 
Developing these solution-based processes is a key goal for Holst Centre's Printed Organic Lighting and Signage program. Sumitomo Chemical's participation will give program members access to high-end OLED materials, particularly for the active (light-emitting) layers. At the same time, Sumitomo Chemical will be able to draw on the program's vast expertise to optimize its materials for low-cost production and flexible substrates.

Disclaimers of Warranties
1. The website does not warrant the following:
1.1 The services from the website meets your requirement;
1.2 The accuracy, completeness, or timeliness of the service;
1.3 The accuracy, reliability of conclusions drawn from using the service;
1.4 The accuracy, completeness, or timeliness, or security of any information that you download from the website
2. The services provided by the website is intended for your reference only. The website shall be not be responsible for investment decisions, damages, or other losses resulting from use of the website or the information contained therein<
Proprietary Rights
You may not reproduce, modify, create derivative works from, display, perform, publish, distribute, disseminate, broadcast or circulate to any third party, any materials contained on the services without the express prior written consent of the website or its legal owner.

Silanna UV is pleased to announce the release of its next generation Far UVC LED, the SF2-3T9B5L1-TB, which exceeds even the popular SF1 series, with UVC wavelengths down to 230nm (typical 233nm); doubled output power; and 2x improvement in te... READ MORE

As automotive design continues to evolve, the demand for sleek, distinctive front lighting has never been greater. Thin, continuous light lines are becoming a defining element of vehicle identity, balancing aesthetics with functionality. In re... READ MORE