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首页> 外文期刊>RSC Advances >Bi-layer hole-injecting layer composed of molybdenum oxide and polyelectrolyte for solution-processed OLEDs with prolonged stability
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Bi-layer hole-injecting layer composed of molybdenum oxide and polyelectrolyte for solution-processed OLEDs with prolonged stability

机译:双层空穴注入层由氧化钼和聚电解质组成,用于稳定稳定性的溶液加工OLED

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摘要

Currently, poly(3,4-ethylene-dioxythiophene):poly(styrene sulfonic acid) (PEDOT:PSS) is predominantly used as the hole-injecting layer in solution processed organic light-emitting diodes (OLEDs). However, its strong acidity is detrimental to device stability. Here, a bi-layer hole-injecting layer (BHIL) composed of molybdenum trioxide (MoO _(3) ) and an anionic polyelectrolyte has been used in solution processed OLEDs to replace PEDOT:PSS. The MoO _(3) layer was firstly solution deposited using low temperature combustion processing, which ensured that the device had a good hole-transporting ability. Then, an anionic polyelectrolyte was deposited on to the MoO _(3) layer also using a solution process, resulting in work function increase which was verified using peak force Kelvin probe force microscopy. Thus, the hole-injecting ability of the BHIL was found to be enhanced. It was found that BHIL-based OLEDs possessed a comparable electroluminescence performance but a better shelf-stability relative to the PEDOT:PSS based devices. This strategy gives a promising approach to obtaining high performance solution processed OLEDs with long-term stability.
机译:目前,聚(3,4-乙烯 - 二氧基噻吩):聚(苯乙烯磺酸)(PEDOT:PSS)主要用作溶液加工有机发光二极管(OLED)中的空穴注入层。然而,其强酸度对装置稳定性有害。这里,由三氧化钼(MOO _(3))和阴离子聚电解质组成的双层空穴注入层(Bhil)已被用于溶液加工的OLED中以取代PEDOT:PSS。首先使用低温燃烧加工沉积MOO _(3)层,这确保了该装置具有良好的空穴传输能力。然后,使用溶液方法将阴离子聚电解质沉积在MOO _(3)层上,导致使用峰值力探针力显微镜进行验证的功函数增加。因此,发现Bhil的空穴注入能力得到增强。发现基于BHIL的OLED具有相当的电致发光性能,而是相对于PEDOT的更好的货架稳定性:基于PSS的装置。该策略提供了具有长期稳定性的高性能解决方案的高性能解决方案的有希望的方法。

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