首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Enhanced light extraction from organic light-emitting devices through non-covalent or covalent polyimide-silica light scattering hybrid films
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Enhanced light extraction from organic light-emitting devices through non-covalent or covalent polyimide-silica light scattering hybrid films

机译:通过非共价或共价聚酰亚胺 - 二氧化硅光散射杂种膜增强来自有机发光器件的光萃取

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In this work, two polyimide/silica composites were prepared via physical blending (A series) and chemical bonding (B series) and compared for light extraction from organic light-emitting devices (OLEDs). In the physical blending process, the hybrids were prepared from the corresponding poly(amic acid) (PAA) and tetramethyl orthosilicate (TMOS) by thermal imidization and sol-gel processes. In contrast, in the chemical bonding process, a series of hybrids were prepared using (3-aminopropyl)triethoxysilane (APTES) as a coupling agent followed by sol-gel and thermal imidization processes. Their optical, thermal, and morphological properties were investigated. The well-dispersed B series hybrid films showed higher optical transparency and lower haze characteristics than A series hybrid films. Furthermore, the scattering behavior was apparent as the silica content increased. They also exhibited high thermal stability with T-d (5% weight loss temperature) higher than 510 degrees C. Finally, these hybrid films were applied into OLEDs. The external quantum efficiency (EQE) of all devices employing the hybrid films on the viewer's side of the substrate as the outcoupling layer increased as the silica content increased. For the OLED utilizing A3 (26 wt% of silica content), an increase of 21% in the light extraction efficiency was achieved.
机译:在这项工作中,通过物理混合(A系列)和化学键合(B系列)制备两种聚酰亚胺/二氧化硅复合材料,并比较来自有机发光器件(OLED)的光提取。在物理混合过程中,通过热酰亚胺化和溶胶 - 凝胶方法由相应的聚(酰胺酸)(PAA)和四甲基外硅酸盐(TMOS)制备杂种。相反,在化学键合方法中,使用(3-氨基丙基)三乙氧基硅烷(Aptes)作为偶联剂制备一系列杂种,然后用溶胶 - 凝胶和热酰亚胺化方法制备。研究了它们的光学,热和形态学性质。分散良好的B系列混合膜显示出比串联混合膜更高的光学透明度和较低的雾度特性。此外,随着二氧化硅含量的增加,散射行为是显而易见的。它们还表现出高于510℃的T-D(5%重量损失温度)的高热稳定性。最后,将这些杂合膜施用于OLED中。随着分耦层的增加随着二氧化硅含量增加,在基板的观察者侧上采用混合膜的所有器件的外部量子效率(EQE)增加。对于利用A3的OLED(占二氧化硅含量的26%(26wt%),实现了光提取效率的增加21%。

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