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Improve the efficiency of white organic light-emitting devices using double-doped system

机译:使用双掺杂系统提高白色有机发光装置的效率

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The doped and non-doped white Organic light-emitting devices (OLEDs) were fabricated, using strong yellow emitting and hole-transporting ability of TPAHQZn. When the white OLED is a double-doped structure, greatly enhanced the efficiency of the device. The double-doped white device were fabricated as follows: ITO/2T-NATA (17 nm)/CBP: 30% TPAHQZn: 8% Ir(ppy)_3 (25nm)/NPBX (15 nm)/BCP(8nm)/TPBi: 10% Ir(ppy)_3 (15nm)/Alq_3 (20 nm)/LiF (1.3 nm)/Al. The double-doped white OLEDs were obtained with Commission International de L'Eclairage coordinates of (0.29,0.28) at 17 V, the maximum current efficiency increaed four times that double-doped white device of 4.12cd/A(8V) than non-doped of 1.03 cd/A (10V).
机译:使用TPAHQZN的强黄色发射和空穴传输能力制造掺杂和非掺杂的白色有机发光器件(OLED)。当白色OLED是双掺杂结构时,大大提高了装置的效率。双掺杂的白色器件如下制造:ITO / 2T-NATA(17nm)/ CBP:30%TPAHQZN:8%IR(PPY)_3(25nm)/ NPBX(15nm)/ BCP(8nm)/ TPBI :10%IR(PPY)_3(15nm)/ Alq_3(20nm)/ LiF(1.3nm)/ al。双掺杂的白色OLED在17 v处用委员会(0.29,0.28)的International de L'EclaRige坐标,最大电流效率增加了4倍的双掺杂白色装置4.12cd / a(8v)的额度而不是非掺杂1.03cd / a(10V)。

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