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电感耦合等离子体对柔性单层触摸屏面板多层电极的影响。

Effect of Inductively Coupled Plasma on Multilayer Electrodes for Flexible Single-Layer Touch Screen Panels.

作者信息

Hong Chan-Hwa, Lee Joon-Min, Kim Young-Hoi, Cheong Woo-Seok

机构信息

ICT Materials & Components Research Laboratory , Electronics and Telecommunications Research Institute , Daejeon 34129 , Korea.

出版信息

ACS Appl Mater Interfaces. 2019 Jul 17;11(28):25495-25499. doi: 10.1021/acsami.8b20781. Epub 2019 Jul 5.

Abstract

We investigated the effect of inductively coupled plasma (ICP) on multilayer electrodes for flexible capacitive touch sensors. We found that using ICP during Ag deposition generally increased the conductivity and transmittance of multilayer electrodes. As a result, in the case of the multilayer electrode with an ICP power of 150 W during Ag deposition, 5.7 Ω/sq of sheet resistance and 89.6% of transmittance (550 nm) have been achieved. We demonstrate that the crystallization of the ICP supplied Ag layer in multilayer electrodes leads to the smooth surface roughness of the multilayer film; the smooth surface roughness provided low light scattering. As a result, the crystallized Ag thin film by ICP improved the sheet resistance and transmittance of multilayer electrodes. Finally, we fabricated a 221 × 130 mm (active layer)-sized single-layer touch screen panel (TSP) using multilayer electrodes with ICP on a corning glass and polyethylene terephthalate flexible substrate. The single-layer TSPs show high linearity and sensitivity with multitouches.

摘要

我们研究了电感耦合等离子体(ICP)对用于柔性电容式触摸传感器的多层电极的影响。我们发现,在银沉积过程中使用ICP通常会提高多层电极的导电性和透光率。因此,对于在银沉积过程中ICP功率为150 W的多层电极,已实现了5.7 Ω/sq的方阻和89.6%的透光率(550 nm)。我们证明,多层电极中由ICP提供的银层的结晶导致多层膜的表面粗糙度平滑;平滑的表面粗糙度提供了低光散射。结果,通过ICP结晶的银薄膜改善了多层电极的方阻和透光率。最后,我们在康宁玻璃和聚对苯二甲酸乙二醇酯柔性基板上使用带有ICP的多层电极制造了一个尺寸为221×130 mm(有源层)的单层触摸屏面板(TSP)。单层TSP对多点触摸显示出高线性度和灵敏度。

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