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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Solution-processed thermally stable amorphous films of small molecular hole injection/transport bi-functional materials and their application in high efficiency OLEDs
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Solution-processed thermally stable amorphous films of small molecular hole injection/transport bi-functional materials and their application in high efficiency OLEDs

机译:小分子空穴注入/传输双功能材料的固溶热稳定非晶膜及其在高效OLED中的应用

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摘要

A series of novel triphenylamine-based small molecular hole transport materials (HTMs) are reported for solution processed organic light-emitting devices (OLEDs). The character of this series of HTMs, denoted as TPD(BTPA)(n) (n = 1, 2, 4), is connecting the flexible moieties of butadiene bridged triphenylamine (BTPA) to N, N, N', N'-tetraphenyl-[1,1'-biphenyl]-4,4'-diamine (TPD). The glass transition temperature and crystallization temperature (T-g and T-c) showed a proportional relationship with the number of BTPA moieties. The Tg value of TPD(BTPA)(4) can be up to 125.5 degrees C, which is higher than most of the reported small molecular HTMs (Tg: 54-116 degrees C). The TPD(BTPA)(4) spincoated film showed an outstanding thermal stability which remained amorphous even when annealed at 110 degrees C, for 48 h. This indicated that the breaking of the planar molecular structure with BTPA moieties can suppress intermolecular stacking. The solution processed OLEDs with 8-hydroxyquinoline aluminum (Alq(3)) as emission and electron transport layers showed high stability at high operation current (>400 mA cm(-2)). The OLED with TPD(BTPA)(4) achieved a maximum current efficiency of 5.83 cd A(-1) (at the operation current density > 400 mA cm(-2)), which is higher than the maximum current efficiency of most evaporation and solution processed OLEDs in identical structures.
机译:据报道,一系列新型的基于三苯胺的小分子空穴传输材料(HTM)用于溶液处理的有机发光器件(OLED)。这一系列HTM的特征表示为TPD(BTPA)(n)(n = 1、2、4),是将丁二烯桥接的三苯胺(BTPA)的柔性部分连接到N,N,N',N'-四苯基-[1,1'-联苯] -4,4'-二胺(TPD)。玻璃化转变温度和结晶温度(T-g和T-c)与BTPA部分的数量成比例关系。 TPD(BTPA)(4)的Tg值可高达125.5摄氏度,高于大多数报道的小分子HTM(Tg:54-116摄氏度)。 TPD(BTPA)(4)旋涂膜显示出出色的热稳定性,即使在110摄氏度下退火48小时仍保持非晶态。这表明用BTPA部分破坏平面分子结构可以抑制分子间的堆积。以8-羟基喹啉铝(Alq(3))作为发射层和电子传输层的溶液加工的OLED在高工作电流(> 400 mA cm(-2))下显示出高稳定性。具有TPD(BTPA)(4)的OLED达到了5.83 cd A(-1)的最大电流效率(在工作电流密度> 400 mA cm(-2)时),高于大多数蒸发的最大电流效率和具有相同结构的溶液处理的OLED。

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