Department of Metallurgical and Materials Engineering, Middle East Technical University, Ankara, 06800, Turkey.
Nanotechnology. 2016 Nov 4;27(44):445708. doi: 10.1088/0957-4484/27/44/445708. Epub 2016 Sep 28.
Silver nanowire (Ag NW) networks are one of the most promising candidates for the replacement of indium tin oxide (ITO) thin films in many different applications. Recently, Ag-NW-based transparent heaters (THs) showed excellent heating performance. In order to overcome the instability issues of Ag NW networks, researchers have offered different hybrid structures. However, these approaches not only require extra processing, but also decrease the optical performance of Ag NW networks. So, it is important to investigate and determine the thermal performance limits of bare-Ag-NW-network-based THs. Herein, we report on the effect of NW density, contact geometry, applied bias, flexing and incremental bias application on the TH performance of Ag NW networks. Ag-NW-network-based THs with a sheet resistance and percentage transmittance of 4.3 Ω sq(-1) and 83.3%, respectively, and a NW density of 1.6 NW μm(-2) reached a maximum temperature of 275 °C under incremental bias application (5 V maximum). With this performance, our results provide a different perspective on bare-Ag-NW-network-based transparent heaters.
银纳米线(Ag NW)网络是替代多种不同应用中铟锡氧化物(ITO)薄膜的最有前途的候选材料之一。最近,基于 Ag-NW 的透明加热器(TH)表现出了优异的加热性能。为了克服 Ag NW 网络的不稳定性问题,研究人员提出了不同的混合结构。然而,这些方法不仅需要额外的处理,而且还降低了 Ag NW 网络的光学性能。因此,研究和确定裸 Ag-NW 网络基 TH 的热性能极限非常重要。本文报道了 NW 密度、接触几何形状、外加偏压、弯曲和增量偏压应用对 Ag NW 网络 TH 性能的影响。Ag-NW 网络基 TH 的方阻和透光率分别为 4.3 Ω/sq 和 83.3%,NW 密度为 1.6 NW/μm2,在增量偏压应用(最大 5 V)下达到 275°C 的最高温度。通过这种性能,我们的结果为裸 Ag-NW 网络基透明加热器提供了不同的视角。