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卷对卷氧化还原焊接和嵌入法制备银纳米线网络电极。

Roll-to-roll redox-welding and embedding for silver nanowire network electrodes.

机构信息

SKKU Advanced Institute of Nanotechnology (SAINT), Sungkyunkwan University, Suwon 440-746, Republic of Korea.

出版信息

Nanoscale. 2018 Oct 21;10(39):18627-18634. doi: 10.1039/c8nr01040d. Epub 2018 Sep 27.

Abstract

We developed a continuous roll-to-roll redox-welding and embedding method for the fabrication of electrodes of silver nanowire (AgNWs) networks. The roll-to-roll welding method involved a sequence of oxidation and reduction reactions in an aqueous solution. The redox-welding significantly decreased the sheet resistance of the AgNW film owing to the strong fusion and interlocking at the nanowire junction, while the optical transmittance was maintained. The first oxidation step using HNO generated ionized silver (Ag) which got re-deposited onto the nanowire junctions via an autocatalytic reaction. The oxide layers, which formed on the nanowire surface by both air exposure and the first step of oxidation, were removed by the second reduction step using NaBH. The redox-welded AgNW electrodes exhibited a sheet resistance of 11.3 Ω sq at the optical transmittance of 90.5% at 550 nm. Furthermore, redox-welding of the AgNWs significantly enhanced their mechanical robustness compared to that of the as-coated AgNWs. The redox-welded AgNWs embedded in a UV curable resin, using a roll-to-roll embedding process, were successfully applied as anode electrodes for large-area and flexible organic light emitting diodes (OLEDs). The device performance is superior to that of a device based on the as-coated AgNW electrode, and is also comparable to that of a device using commercial ITO as the electrode. The redox-welding and embedding processes provide a facile and reliable method for fabricating large-area transparent flexible electrodes for next-generation flexible optoelectronic devices.

摘要

我们开发了一种连续的卷对卷氧化还原焊接和嵌入方法,用于制造银纳米线(AgNWs)网络的电极。该卷对卷焊接方法涉及在水溶液中的一系列氧化还原反应。氧化还原焊接由于纳米线连接处的强烈融合和联锁,显著降低了 AgNW 薄膜的方阻,同时保持了光透过率。使用 HNO3 的第一步氧化产生了离子化银(Ag),通过自催化反应重新沉积在纳米线连接处。通过使用 NaBH4 的第二步还原,去除了纳米线表面通过空气暴露和第一步氧化形成的氧化物层。氧化还原焊接的 AgNW 电极在 550nm 时的光透过率为 90.5%,方阻为 11.3 Ω sq。此外,与原始涂层的 AgNW 相比,氧化还原焊接显著提高了 AgNW 的机械强度。使用卷对卷嵌入工艺,将嵌入在紫外光可固化树脂中的氧化还原焊接的 AgNW 成功应用于大面积柔性有机发光二极管(OLED)的阳极电极。该器件的性能优于基于原始涂层 AgNW 电极的器件,并且与使用商用 ITO 作为电极的器件相当。氧化还原焊接和嵌入工艺为下一代柔性光电设备的大面积透明柔性电极的制造提供了一种简便可靠的方法。

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