材料科学
光刻
有机发光二极管
光电子学
平版印刷术
蚀刻(微加工)
反应离子刻蚀
纳米技术
硅
图层(电子)
作者
Hyukmin Kweon,Keun‐Yeong Choi,Han Wool Park,Ryungyu Lee,Ukjin Jeong,Min Jung Kim,Hyunmin Hong,Borina Ha,Sein Lee,Jang‐Yeon Kwon,Kwun‐Bum Chung,Moon Sung Kang,Hojin Lee,Do Hwan Kim
标识
DOI:10.1038/s41467-022-34531-y
摘要
Ultrahigh-resolution patterning with high-throughput and high-fidelity is highly in demand for expanding the potential of organic light-emitting diodes (OLEDs) from mobile and TV displays into near-to-eye microdisplays. However, current patterning techniques so far suffer from low resolution, consecutive pattern for RGB pixelation, low pattern fidelity, and throughput issue. Here, we present a silicone engineered anisotropic lithography of the organic light-emitting semiconductor (OLES) that in-situ forms a non-volatile etch-blocking layer during reactive ion etching. This unique feature not only slows the etch rate but also enhances the anisotropy of etch direction, leading to gain delicate control in forming ultrahigh-density multicolor OLES patterns (up to 4500 pixels per inch) through photolithography. This patterning strategy inspired by silicon etching chemistry is expected to provide new insights into ultrahigh-density OLED microdisplays.
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