Zhong Zhaoyang, Lee Seung-Hyun, Ko Pyeongsam, Kwon Sin, Youn Hongseok, Seok Jae Young, Woo Kyoohee
Advanced Manufacturing Systems Research Division, Korea Institute of Machinery and Materials (KIMM), Daejeon 305-343, Republic of Korea.
Department of Mechanical Engineering, Hanbat National University, Dongseodaero 125, Yuseong-gu, Daejeon, 34158, Republic of Korea.
Nanoscale. 2020 Jan 28;12(4):2366-2373. doi: 10.1039/c9nr09383d. Epub 2020 Jan 21.
Development of electronic devices on ultrathin flexible plastic substrates is of great value in terms of portability, cost reduction, and mechanical flexibility. However, because thin plastic substrates with low heat capacity can be more easily damaged by thermal energy, their use is limited. Highly flexible nanowire (NW) transparent conductive electrodes on ultrathin (∼10 μm) low cost polyethylene terephthalate (PET) substrates are fabricated. The control of intense pulsed light (IPL) irradiation process parameters to induce NW welding for maximum conductivity and minimal thermal damage of the PET substrate is explored. For this purpose, trends in temperature variation of NW thin films irradiated by IPL under various operating conditions are numerically analyzed using commercial software. Simulations indicate that irradiating light operated at a higher voltage and for a shorter time, and use of multiple pulses of low frequency can reduce thermal deformation of the PET substrate. Furthermore, we experimentally confirm that NW transparent electrodes can be successfully fabricated with less thermal deformation of the ultrathin plastic substrate when light is irradiated under well-controlled conditions derived from the simulation. The highly flexible NW transparent conducting electrode exhibits excellent mechanical flexibility to withstand severe deformation and can be successfully implemented in flexible organic light-emitting diodes (OLEDs).
在超薄柔性塑料基板上开发电子设备在便携性、成本降低和机械柔韧性方面具有巨大价值。然而,由于热容量低的薄塑料基板更容易受到热能损坏,其应用受到限制。本文制备了基于超薄(约10μm)低成本聚对苯二甲酸乙二醇酯(PET)基板的高柔韧性纳米线(NW)透明导电电极。探索了通过控制强脉冲光(IPL)辐照工艺参数来诱导NW焊接,以实现PET基板的最大导电性和最小热损伤。为此,使用商业软件对不同操作条件下IPL辐照的NW薄膜的温度变化趋势进行了数值分析。模拟结果表明,在较高电压下较短时间照射以及使用多个低频脉冲可以减少PET基板的热变形。此外,我们通过实验证实,在模拟得出的良好控制条件下照射光时,可以成功制备NW透明电极,同时超薄塑料基板的热变形较小。这种高柔韧性的NW透明导电电极表现出优异的机械柔韧性,能够承受严重变形,并可成功应用于柔性有机发光二极管(OLED)。