School of Mechanical Engineering, Sungkyunkwan University, Suwon 16419, Korea.
Nanotechnology. 2016 Nov 18;27(46):465706. doi: 10.1088/0957-4484/27/46/465706. Epub 2016 Oct 19.
Silver nanowires (Ag NWs) have received considerable attention for flexible transparent conductive films (TCFs) since they provide a relatively low sheet resistance at a high transmittance. However, the diffuse light scattering, haze, has been regarded as a hurdle to achieve clarity of films. Here we revisit the Mie scattering theory to calculate the extinction and scattering coefficients of Ag NWs which were employed to estimate haze of TCFs. The theory predicted a decrease in haze with a decrease in Ag NW diameter which was supported by experimental investigations carried out using Ag NWs with 5 different diameters (17.6, 19.9, 22.5, 24.3, and 29.6 nm). Overall, excellent properties of TCFs (haze = 0.21%-1.8%, transmittance = 95.33%-98.45%, sheet resistance = 20.87-81.76 Ω sq) were obtained. Ag NWs with a diameter of 17.6 nm provided minimum haze values at equivalent sheet resistances (e.g., haze = 0.21%, transmittance = 98.45%, sheet resistance = 77.36 Ω sq) compared with ones with lager diameters and the controls in literatures. This work investigated the interdependence between haze and NW diameter and might provide a design guide for flexible Ag NW TCFs.
银纳米线(AgNWs)因其在高透光率下提供相对较低的方阻而在柔性透明导电薄膜(TCFs)中受到广泛关注。然而,漫散射(haze)一直被认为是实现薄膜清晰度的障碍。在这里,我们重新审视了米氏散射理论,以计算 AgNWs 的消光和散射系数,这些系数被用于估计 TCFs 的雾度。该理论预测随着 AgNW 直径的减小,雾度会降低,这一预测得到了使用 5 种不同直径(17.6nm、19.9nm、22.5nm、24.3nm 和 29.6nm)AgNW 进行的实验研究的支持。总的来说,TCFs 具有优异的性能(雾度=0.21%-1.8%,透光率=95.33%-98.45%,方阻=20.87-81.76 Ω sq)。与直径较大的 AgNW 相比,直径为 17.6nm 的 AgNW 在等效方阻下(例如,雾度=0.21%,透光率=98.45%,方阻=77.36 Ω sq)具有最小的雾度值,而文献中的对照样品也是如此。这项工作研究了雾度与 NW 直径之间的相互依赖性,为柔性 AgNW TCFs 的设计提供了指导。