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http://dx.doi.org/10.5695/JKISE.2015.48.3.115

White Tandem Organic Light-Emitting Diodes Using Red and Blue Fluorescent Materials  

Park, Chan-Suk (Department of Advanced Materials Science & Engineering, Daejin University)
Kong, Do-Hun (Department of Advanced Materials Science & Engineering, Daejin University)
Kang, Ju-Hyun (Department of Advanced Materials Science & Engineering, Daejin University)
Yun, Sung-Hyuk (Department of Advanced Materials Science & Engineering, Daejin University)
Ju, Sung-Hoo (Department of Advanced Materials Science & Engineering, Daejin University)
Publication Information
Journal of the Korean institute of surface engineering / v.48, no.3, 2015 , pp. 115-120 More about this Journal
Abstract
We studied white tandem organic light-emitting diodes using red and blue fluorescent materials. White 2 units tandem OLEDs were fabricated using $Alq_3$:Rubrene (3 vol.% 5 nm) and SH-1 : BD-2 (3 vol.% 25 nm) as emitting layer (EML). The device with $Alq_3$ : Rubrene (3 vol.% 5 nm) / SH-1 : BD-2 (3 vol.% 25 nm) showed yellowish white emission with a Commission Internationale de l'Eclairage (CIE) coordinates of (0.442, 0.473) at $1,000cd/m^2$, and variation of CIE coordinates was low with ($0.44{\pm}0.002$, $0.472{\pm}0.001$) from 500 to $3,000cd/m^2$. White 3 units tandem OLEDs were fabricated by additory stacking the blue or white layer as EML. CIE coordinates of 3 units tandem OLEDs with stacked blue and white layer was low variation of ($0.293{\pm}0.008$, $0.36{\pm}0.005$) and ($0.412{\pm}0.002$, $0.423{\pm}0.001$) from 500 to $3,000cd/m^2$, respectively. Our findings suggest that stacked OLED was possible to controlling CIE coordinates and producing excellent color stability.
Keywords
OLED; Tandem; White; Color stability;
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