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工程银纳米线网络:从透明电极到电阻开关器件。

Engineering Silver Nanowire Networks: From Transparent Electrodes to Resistive Switching Devices.

机构信息

School of Materials Science and Engineering, University of New South Wales , Sydney, NSW 2052, Australia.

出版信息

ACS Appl Mater Interfaces. 2017 Jun 21;9(24):20762-20770. doi: 10.1021/acsami.7b04839. Epub 2017 Jun 6.

Abstract

Metal nanowires (NWs) networks with high conductance have shown potential applications in modern electronic components, especially the transparent electrodes over the past decade. In metal NW networks, the electrical connectivity of nanoscale NW junction can be modulated for various applications. In this work, silver nanowire (Ag NW) networks were selected to achieve the desired functions. The Ag NWs were first synthesized by a classic polyol process, and spin-coated on glass to fabricate transparent electrodes. The as-fabricated electrode showed a sheet resistance of 7.158 Ω □ with an optical transmittance of 79.19% at 550 nm, indicating a comparable figure of merit (FOM, or Φ) (13.55 × 10 Ω). Then, two different post-treatments were designed to tune the Ag NWs for not only transparent electrode but also for threshold resistive switching (RS) application. On the one hand, the Ag NW film was mechanically pressed to significantly improve the conductance by reducing the junction resistance. On the other hand, an Ag@AgO core-shell structure was deliberately designed by partial oxidation of Ag NWs through simple ultraviolet (UV)-ozone treatment. The Ag core can act as metallic interconnect and the insulating AgO shell acts as a switching medium to provide a conductive pathway for Ag filament migration. By fabricating Ag/Ag@AgO/Ag planar structure, a volatile threshold switching characteristic was observed and an on/off ratio of ∼100 was achieved. This work showed that through different post-treatments, Ag NW network can be engineered for diverse functions, transforming from transparent electrodes to RS devices.

摘要

金属纳米线(NWs)网络具有高导电性,在过去十年中,在现代电子元件中显示出潜在的应用,特别是透明电极。在金属 NW 网络中,纳米级 NW 结的电连接可以为各种应用进行调制。在这项工作中,选择了银纳米线(Ag NW)网络来实现所需的功能。首先通过经典的多元醇工艺合成 Ag NW,并旋涂在玻璃上以制造透明电极。所制备的电极的方阻为 7.158 Ω □,在 550nm 处的光透射率为 79.19%,表明具有相当的优值(FOM,或 Φ)(13.55×10 Ω)。然后,设计了两种不同的后处理方法来调整 Ag NW,使其不仅可用于透明电极,还可用于阈值电阻开关(RS)应用。一方面,通过机械压缩 Ag NW 薄膜来显著提高电导率,从而降低结电阻。另一方面,通过简单的紫外(UV)-臭氧处理部分氧化 Ag NW 来故意设计 Ag@AgO 核壳结构。Ag 核可以充当金属互连,而绝缘的 AgO 壳充当开关介质,为 Ag 灯丝迁移提供导电途径。通过制造 Ag/Ag@AgO/Ag 平面结构,观察到了挥发性的阈值开关特性,并实现了约 100 的开/关比。这项工作表明,通过不同的后处理,可以对 Ag NW 网络进行工程设计,以实现多种功能,从透明电极转变为 RS 器件。

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