首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Clean surface transfer of graphene films via an effective sandwich method for organic light-emitting diode applications
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Clean surface transfer of graphene films via an effective sandwich method for organic light-emitting diode applications

机译:通过有效的夹心方法在有机发光二极管应用中清洁石墨烯膜的表面转移

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摘要

Graphene shows great promise as a transparent conductive electrode to replace conventional indium tin oxide (ITO) for optoelectronic applications. However, the wide applications of graphene in fields such as organic light emitting diodes (OLEDs) are restricted by the difficulty in obtaining a clean and flat graphene surface, as the large residue generated during graphene transfer can lead to a large short circuit current and consequently degradation of the device performance. Here, we report a novel sandwich method to achieve the efficient transfer of graphene with an ultra-clean and flat surface onto a flexible substrate for OLED applications. Differing from the conventional poly(methyl methacrylate) (PMMAj-supported transfer technique, an organic small molecular buffer layer, e.g., a 2-(diphenylphosphory) spirofluorene (SPPOl) layer, was inserted between PMMA and graphene, forming a PMMA/SPPOl/graphene sandwich structure. The separation of PMMA from graphene, along with the large solubility of SPPOl in clean solvent, results in a substantial reduction of PMMA residue on the graphene. As expected, flexible OLED devices based on the PMMA/SPPOl transferred graphene films exhibited a much enhanced performance compared to their counterparts fabricated from PMMA transferred films. Our results demonstrate the great potential of the sandwich transfer technique for the fabrication of high-performance OLED devices, as well as other optoelectronic devices.
机译:石墨烯作为透明导电电极具有广阔的前景,可替代光电应用中的常规铟锡氧化物(ITO)。但是,石墨烯在诸如有机发光二极管(OLED)等领域的广泛应用受到难以获得干净平坦的石墨烯表面的限制,因为在石墨烯转移过程中产生的大量残留物会导致较大的短路电流,因此设备性能下降。在这里,我们报告了一种新颖的三明治方法,该方法可实现将具有超洁净平坦表面的石墨烯有效转移到用于OLED应用的柔性基板上。与传统的聚甲基丙烯酸甲酯(PMMAj支持的转移技术)不同,在PMMA和石墨烯之间插入了有机小分子缓冲层,例如2-(二苯基磷基)螺芴(SPPOl)层,形成了PMMA / SPPO1 /石墨烯夹层结构:PMMA与石墨烯的分离,以及SPPO1在清洁溶剂中的高溶解度,导致石墨烯上的PMMA残留量大大减少,如所预期的,基于PMMA / SPPO1转移的石墨烯薄膜的柔性OLED器件表现出与由PMMA转移膜制成的同类产品相比,其性能大大提高,我们的结果证明了三明治转移技术在制造高性能OLED器件以及其他光电器件方面的巨大潜力。

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