Kim Bong Sung, Won Sejeong, Seo Jungkook, Jeong Sang Kyu, Kim Chan, Kim Kwang-Seop, Kim Sun Ho, Cho Sung Min, Kim Jae-Hyun
Nano-Convergence Mechanical Systems Research Division, Korea Institute of Machinery & Materials, Daejeon 34103, Republic of Korea.
Center for Advanced Meta-Materials (CAMM), Daejeon 34103, Republic of Korea.
ACS Appl Mater Interfaces. 2021 Jun 9;13(22):26601-26609. doi: 10.1021/acsami.1c04858. Epub 2021 May 25.
We propose an embedded reverse-offset printing (EROP) method, which generates silver nanowire (AgNW) transparent electrodes for display applications. The proposed EROP method can solve the two critical issues of microscale pattern formation and surface planarization. The AgNW electrode had a transmittance of 82% at 550 nm, a sheet resistance of 12.2 Ω/sq, and a 3.27 nm smooth surface. We realized the roll-based pattern formation of AgNW on a plastic substrate as small as 10 μm with negligible step differences to facilitate the proposed method. The proposed EROP method also produced a double-stacked AgNW electrode, enabling the simultaneous operation of separately micropatterned devices. To verify the usefulness of EROP, we fabricated an organic light-emitting diode (OLED) device to demonstrate leakage current reduction and efficiency improvement compared with a conventional indium tin oxide (ITO)-based OLED device. The EROP-based OLED showed 38 and 25% higher current efficiencies than an insulator-patterned AgNW OLED and a conventional ITO-based OLED, respectively.
我们提出了一种嵌入式反向偏移印刷(EROP)方法,该方法可用于制造用于显示应用的银纳米线(AgNW)透明电极。所提出的EROP方法能够解决微尺度图案形成和表面平面化这两个关键问题。该AgNW电极在550 nm处的透过率为82%,方阻为12.2 Ω/sq,表面平整度为3.27 nm。我们在低至10μm的塑料基板上实现了AgNW的基于卷对卷的图案形成,台阶差异可忽略不计,以推动该方法的应用。所提出的EROP方法还制造了双层AgNW电极,能够使单独的微图案化器件同时运行。为了验证EROP的实用性,我们制造了一种有机发光二极管(OLED)器件,以证明与传统的基于氧化铟锡(ITO)的OLED器件相比,其漏电流降低且效率提高。基于EROP的OLED的电流效率分别比绝缘体图案化的AgNW OLED和传统ITO基OLED高38%和25%。