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一种使用核壳结构的Ag/ZnO纳米棒的光学平面导电外耦合器。

An Optically Flat Conductive Outcoupler Using Core/Shell Ag/ZnO Nanochurros.

作者信息

Yoo Young Zo, Na Jin-Young, Choi Yoon Soo, Lim Yeong Jin, Kim Ji-Hyun, Kim Young-Bin, Kim Jae-Ho, Kim Sun-Kyung, Seong Tae-Yeon

机构信息

R&D Center, DUKSAN Hi-Metal Co. Ltd, Ulsan, 44252, Republic of Korea.

Department of Applied Physics, Kyung Hee University, Gyeonggi-do, 17104, Republic of Korea.

出版信息

Small. 2018 May;14(20):e1800056. doi: 10.1002/smll.201800056. Epub 2018 Apr 10.

DOI:10.1002/smll.201800056
PMID:29635814
Abstract

Transparent conductive electrodes (TCEs) featuring a smooth surface are indispensable for preserving pristine electrical characteristics in optoelectronic and transparent electronic devices. For high-efficiency organic light emitting diodes (OLEDs), a high outcoupling efficiency, which is crucial, is only achieved by incorporating a wavelength-scale undulating surface into a TCE layer, but this inevitably degrades device performance. Here, an optically flat, high-conductivity TCE composed of core/shell Ag/ZnO nanochurros (NCs) is reported embedded within a resin film on a polyethylene terephthalate substrate, simultaneously serving as an efficient outcoupler and a flexible substrate. The ZnO NCs are epitaxially grown on the {100} planes of a pentagonal Ag core and the length of ZnO shells is precisely controlled by the exposure time of Xe lamp. Unlike Ag nanowires films, the Ag/ZnO NCs films markedly boost the optical tunneling of light. Green-emitting OLEDs (2.78 × 3.5 mm ) fabricated with the Ag/ZnO TCE exhibit an 86% higher power efficiency at 1000 cd m than ones with an Sn-doped indium oxide TCE. A full-vectorial electromagnetic simulation suggests the suppression of plasmonic absorption losses within their Ag cores. These results provide a feasibility of multifunctional TCEs with synthetically controlled core/shell nanomaterials toward the development of high-efficiency LED and solar cell devices.

摘要

具有光滑表面的透明导电电极(TCE)对于保持光电子和透明电子器件的原始电学特性必不可少。对于高效有机发光二极管(OLED),只有通过将波长尺度的起伏表面纳入TCE层才能实现至关重要的高外耦合效率,但这不可避免地会降低器件性能。在此,报道了一种由核/壳Ag/ZnO纳米棒(NC)组成的光学平坦、高导电性的TCE,其嵌入聚对苯二甲酸乙二醇酯基板上的树脂膜中,同时作为高效外耦合器和柔性基板。ZnO NC在五角形Ag核的{100}面上外延生长,ZnO壳的长度由Xe灯的曝光时间精确控制。与Ag纳米线薄膜不同,Ag/ZnO NC薄膜显著增强了光的光学隧穿。用Ag/ZnO TCE制造的绿色发光OLED(2.78×3.5 mm)在1000 cd m时的功率效率比用掺锡氧化铟TCE制造的OLED高86%。全矢量电磁模拟表明其Ag核内的等离子体吸收损耗得到抑制。这些结果为利用合成控制的核/壳纳米材料开发多功能TCE以用于高效LED和太阳能电池器件提供了可行性。

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