This inventor holds 2 USPTO granted patents and 2 EPO patents. Top assignees: Lt Materials Co., Ltd., Lt Materials Co., Ltd.. Active years: 2022-2026.
Company Filing History:
Years Active: 2022-2026
Title: Jiyoon Byun: Innovator in Organic Light Emitting Devices
Introduction
Jiyoon Byun is a notable inventor based in Osan, South Korea. She has made significant contributions to the field of organic light emitting devices, holding a total of 2 patents. Her work focuses on the development of innovative materials that enhance the performance of these devices.
Latest Patents
Jiyoon Byun's latest patents include two key inventions. The first patent is titled "Heterocyclic compound and organic light emitting element comprising same." This invention relates to a heterocyclic compound represented by Chemical Formula 1, and an organic light emitting device that incorporates this compound. The second patent is "Organic light emitting element and composition for organic material layer in organic light emitting element." This patent describes an organic light emitting device that features a first electrode, a second electrode, and one or more organic material layers positioned between them. Notably, one or more layers of the organic material layers include a heterocyclic compound represented by Chemical Formula 1 and another heterocyclic compound represented by Chemical Formula 2.
Career Highlights
Throughout her career, Jiyoon Byun has worked with Lt Materials Co., Ltd., where she has contributed to the advancement of materials used in organic light emitting devices. Her expertise in this area has positioned her as a key player in the field of organic electronics.
Collaborations
Jiyoon has collaborated with several professionals in her field, including Dongjun Kim and Young Seok No. These collaborations have further enriched her research and development efforts.
Conclusion
Jiyoon Byun's innovative work in organic light emitting devices showcases her dedication to advancing technology in this area. Her patents reflect her commitment to improving the efficiency and effectiveness of organic materials in electronic applications.