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Low Power-Consumption and Long Lifetime OLED with a High Tg n-type Organic Transport Material

机译:低功耗和长期寿命OLED,具有高TG N型有机运输材料

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In this paper, we demonstrated an organic light emitting device (OLED) of low driving voltage, high current efficiency and long lifetime by using an n-type organic material as the electron transport layer (ETL). Such a layer is composed of a large alkali metal, i.e. Cesium (Cs), doped into the organic material. Cs atom is heavy and hard to diffuse into the emitting layer (EML) material that decreases the metal quenching and increase the operation lifetime. 2,9-dimethyl-4,7-diphenyl 1,10- phenanthrolin (BCP) and 2,5-diaryl-1,3,4-oxadiazoles (OXD) were used as the host organic material. OXD is thermally stable and exhibits a high glass transition temperature (Tg) of 147 °C that can further increase the operation lifetime. The resistivity of those doped materials is about 3x10~5 Ω-cm that is two orders of magnitude lower than the resistivity of the pure organic materials. Compared with the conventional LiF/Al device, about two-volt reduction in driving voltage was observed. Current efficiency is also increased due to better carrier balance. Operation lifetimes of metal dopant devices are longer than that of the conventional device especially by using OXD as the host of the ETL.
机译:在本文中,我们通过用N型有机材料作为电子传输层(ETL)来证明了低驱动电压,高电流效率和长寿命的有机发光器件(OLED)。这种层由大碱金属,即掺铯(Cs),掺杂到有机物中。 CS原子重且难以扩散到降低金属淬火的发光层(EML)材料中并增加操作寿命。使用2,9-二甲基-4,7-二苯基1,10-膦(BCP)和2,5-二芳基-1,3,4-二氧化氮(OXD)作为宿主有机材料。 OXD是热稳定的,并且具有147℃的高玻璃化转变温度(Tg),其可以进一步提高操作寿命。这些掺杂材料的电阻率约为3×10〜5Ω-cm,这比纯有机材料的电阻率低两个数量级。与传统的LIF / Al器件相比,观察到驱动电压的约两伏降低。由于更好的载波平衡,电流效率也增加。金属掺杂装置的操作寿命比常规装置的操作寿命长于常规装置,特别是通过使用Oxd作为EtL的宿主。

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