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Microlithography of hole transport layers for high-resolution organic light-emitting diodes with reduced electrical crosstalk
- Kweon, Hyukmin;
- Kim, Seonkwon;
- Ha, Borina;
- Lee, Seunghan;
- Lee, Soyeon;
- ... Kang, Moon Sung;
- 외 6명
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20SCOPUS
19초록
High-density displays are required for the development of virtual and augmented reality devices. However, increasing the pixel resolution can lead to higher electrical pixel crosstalk, primarily due to a shared hole transport layer. Here we show that a silicone-integrated small-molecule hole transport layer can be patterned at the wafer scale with microlithography to mitigate electrical pixel crosstalk. This provides high-density pixelation and improved performance of the hole transport layer itself. With this approach, we create high-fidelity micro-pattern arrays with a resolution of up to 10,062 pixels per inch on a six-inch wafer. The silicone-integrated small-molecule hole transport layer can effectively modulate charge balance within the emission layers, improving the luminance characteristics of organic light-emitting diodes. We also show that organic light-emitting diodes integrated with micro-patterned silicone-integrated small-molecule hole transport layers have a reduced electrical pixel crosstalk compared with organic light-emitting diodes with a typical hole transport layer.
- 제목
- Microlithography of hole transport layers for high-resolution organic light-emitting diodes with reduced electrical crosstalk
- 저자
- Kweon, Hyukmin; Kim, Seonkwon; Ha, Borina; Lee, Seunghan; Lee, Soyeon; Roh, Seunghwan; Oh, Hayoung; Ha, Jiyeon; Kang, Minsu; Kang, Moon Sung; Cho, Jeong Ho; Kim, Do Hwan
- 발행일
- 2025-01-27
- 유형
- Article
- 저널명
- Nature Electronics
- 권
- 8
- 호
- 1
- 페이지
- 66 ~ 74