Highly Efficient and Reliable Organic Light-Emitting Diodes Enabled by a Multifunctional Hazy Substrate for Extreme Environments

  • Jeon, Yongmin
  • Lee, Tae-Yun
  • Nam, Minwoo
  • Lee, Hyeongjun
  • Kim, Hyeunwoo
  • 외 10명
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초록

As transparent, flexible, and wearable organic electronics degrade under normal outdoor environmental conditions (e.g., water vapor, oxygen, and UV light) and extreme environments, including washing or rain, a customized encapsulation technology is required to improve device reliability. Herein, a simple process is presented for fabricating multifunctional hazy substrates (MFHSs) with excellent gas diffusion barrier (GDB), flexibility, UV reflectance, light scattering, and waterproof properties. First, a spiky polyethylene terephthalate (PET) surface is produced with 76.0% optical haze through ion-beam treatment followed by the formation of a hydrophobic layer to achieve a waterproof effect (contact angle: 153.3 degrees). Then, a multifunctional multibarrier film is fabricated based on a nano-laminated distributed Bragg reflector and functional polymer on the functional PET substrate to serve as a GDB and UV filter. This multibarrier film has excellent mechanical and chemical stabilities, in addition to having a water vapor transmission rate of 10(-6) g m(-2) day(-1) and UV transmittance of <3%. The so-fabricated MFHS not only increases the device efficiency by 73% but also enables a highly flexible and environmentally stable organic light-emitting diode. The surface treatment and encapsulation technologies developed in this study are expected to increase the lifetime of organic devices and facilitate high outdoor usability.

키워드

ALD nanolaminateion-beamlight extration effectorganic light-emitting diodes (OLED)polyethylene terephthalate (PET)wearable encapsulationTHIN-FILMSENCAPSULATIONLAYERPERFORMANCERESISTANTCOLORLESS
제목
Highly Efficient and Reliable Organic Light-Emitting Diodes Enabled by a Multifunctional Hazy Substrate for Extreme Environments
저자
Jeon, YongminLee, Tae-YunNam, MinwooLee, HyeongjunKim, HyeunwooLee, Sun-WooOh, Seung JinChoi, SeungyeopYang, Jun-YeongJung, SunghoonLee, SeunghunByeon, Eun-YeonKim, Taek-SooJeon, HeonsuKwon, Jeong Hyun
DOI
10.1002/adfm.202310268
발행일
2024-05
유형
Article
저널명
Advanced Materials for Optics and Electronics
34
18