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Surface Control of Planarization Layer on Embossed Glass for Light Extraction in OLEDs
Authors:Doo‐Hee Cho  Jin‐Wook Shin  Jaehyun Moon  Seung Koo Park  Chul Woong Joo  Nam Sung Cho  Jin Woo Huh  Jun‐Han Han  Jonghee Lee  Hye Yong Chu  Jeong‐Ik Lee
Affiliation:Doo‐Hee Cho (corresponding author, chodh@etri.re.kr), Jin‐Wook Shin (shinjw@etri.re.kr), Jaehyun Moon (jmoon@etri.re.kr), Seung Koo Park (skpark@etri.re.kr), Chul Woong Joo (cwjoo@etri.re.kr), Nam Sung Cho (kevinchons@etri.re.kr), Jin Woo Huh (jwhuh@etri.re.kr), Jun‐Han Han (junhan@etri.re.kr), Jonghee Lee (jonghee.lee@etri.re.kr), Hye Yong Chu (hychu@etri.re.kr), and Jeong‐Ik Lee (jiklee@etri.re.kr) are with the Components & Materials Research Laboratory, ETRI, Daejeon, Rep. of Korea.
Abstract:We developed a highly refractive index planarization layer showing a very smooth surface for organic light‐emitting diode (OLED) light extraction, and we successfully prepared a highly efficient white OLED device with an embossed nano‐structure and highly refractive index planarization layers. White OLEDs act as an internal out‐coupling layer. We used a spin‐coating method and two types of TiO2 solutions for a planarization of the embossed nano‐structure on a glass substrate. The first TiO2 solution was TiO2 sol, which consists of TiO2 colloidal particles in an acidic aqueous solution and several organic additives. The second solution was an organic and inorganic hybrid solution of TiO2. The surface roughness (Ra) and refractive index of the TiO2 planarization films on a flat glass were 0.4 nm and 2.0 at 550 nm, respectively. The J–V characteristics of the OLED including the embossed nano‐structure and the TiO2 planarization film were almost the same as those of an OLED with a flat glass, and the luminous efficacy of the aforementioned OLED was enhanced by 34% compared to that of an OLED with a flat glass.
Keywords:Light extraction  OLED  out‐coupling  refractive index  planarization
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