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HIGH RESOLUTION LASER PATTERNING OF ITO ON PET SUBSTRATE

机译:PET基体上ITO的高分辨率激光布图

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摘要

Cost-effective laser patterning of indium tin oxide (ITO) thin film coated on flexible polyethylene terephthalate (PET) film substrate for touch panel was studied. The target scribing width was set to the order of 10 urn in order to examine issues involved with higher feature resolution. Picosecond-pulsed laser and Q-switched nanosecond-pulsed laser at the wavelength of 532nm were applied for the comparison of laser patterning in picosecond and nanosecond regimes. While relatively superior scribing quality was achieved by picosecond laser, 532 nm wavelength showed a limitation due to weaker absorption in ITO film. In order to seek for cost-effective solution for high resolution ITO scribing, nanosecond laser pulses were applied and performance of 532nm and 1064nm wavelengths were compared. 1064nm wavelength shows relatively better scribing quality due to the higher absorption ratio in ITO film, yet at noticeable substrate damage. Through single pulse based scribing experiments, we inspected that reduced pulse overlapping is preferred in order to minimize the substrate damage during line patterning.
机译:研究了在触控面板的柔性聚对苯二甲酸乙二酯(PET)薄膜基材上涂覆的铟锡氧化物(ITO)薄膜的经济有效的激光构图。目标划线宽度设置为10微米,以便检查与更高的功能分辨率有关的问题。应用皮秒脉冲激光器和Q开关纳秒脉冲激光器(波长为532nm)比较皮秒和纳秒范围内的激光图案。尽管通过皮秒激光获得了相对优异的刻划质量,但由于ITO薄膜吸收较弱,因此532 nm波长显示出局限性。为了寻求用于高分辨率ITO划刻的经济有效的解决方案,应用了纳秒级激光脉冲,并比较了532nm和1064nm波长的性能。由于ITO膜的吸收率更高,因此1064nm波长显示出相对较好的刻划质量,但对基板造成了明显损坏。通过基于单脉冲的划刻实验,我们检查了减少脉冲重叠是优选的,以最大程度地减小线图案化过程中对基板的损坏。

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  • 来源
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Department of Mechanical Engineering, Stony Brook University, Stony Brook, NY, 11794,Laser Solar Photovoltaic Laboratory, Advanced Energy Research and Technology Center, Stony Brook, NY, 11794;

    Department of Mechanical Engineering, Stony Brook University, Stony Brook, NY, 11794,Laser Solar Photovoltaic Laboratory, Advanced Energy Research and Technology Center, Stony Brook, NY, 11794;

    Yuco Optics Corporation, Bohemia, NY, 11716,Yuco Application Laboratory, Advanced Energy Research and Technology Center, Stony Brook, NY, 11794;

    Yuco Optics Corporation, Bohemia, NY, 11716,Yuco Application Laboratory, Advanced Energy Research and Technology Center, Stony Brook, NY, 11794;

    Department of Mechanical Engineering, Stony Brook University, Stony Brook, NY, 11794,Laser Solar Photovoltaic Laboratory, Advanced Energy Research and Technology Center, Stony Brook, NY, 11794;

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  • 正文语种 eng
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