Nanoscale plasmonic wires with maximal figure of merits as a superior flexible transparent conducting electrode for RGB colors

等离子体子 氧化铟锡 光电子学 材料科学 电极 导电体 透射率 纳米尺度 RGB颜色模型 透明导电膜 纳米棒 纳米技术 计算机科学 薄膜 复合材料 物理 人工智能 量子力学
作者
Chin-Chien Chung,Dong‐Sheng Su,Tsung-Yu Huang,Cheng‐Yi Lee,Robert J. Visser,B. Leo Kwak,Hyunsung Bang,Chung-Chia Chen,Wan‐Yu Lin,Ta‐Jen Yen
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:12 (1)
标识
DOI:10.1038/s41598-022-14756-z
摘要

Based on incredibly increasing applications in modern optoelectronic devices, the demand for securing a superior conductive transparent electrode (TCE) candidate becomes significant and urgent. However, boosting both transmittance and conductance simultaneously is an intrinsic limitation. In this work, we present silver nanoscale plasmonic wires (Ag NPWs) to function as TCEs in the visible light region by lowering their corresponding plasma frequencies. By carefully designing geometric dimensions of the Ag NPWs, we also optimize the performance for red, green, and blue colors, respectively. The demonstrated figure of merits for RGB colors appeared respectively 443.29, 459.46, and 133.78 in simulation and 302.75, 344.11, and 348.02 in experiments. Evidently, our Ag NPWs offer much greater FoMs beyond conventional TCEs that are most frequently comprised of indium tin oxide and show further advantages of flexibility and less Moire effect for the applications of flexible and high-resolution optoelectronic devices.

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