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Laser-induced reduced-graphene-oxide micro-optics patterned by femtosecond laser direct writing

机译:由飞秒激光直接写入模拟的激光诱导的石墨烯 - 氧化物微光学

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摘要

Direct laser writing has emerged as a promising technology for facile and cost-effective single-step manufacturing of laser-induced reduced-graphene-oxide (LIRGO). Since LIRGO's optical properties can be controlled during photoreduction process, laser-patterned micro-optics can work as light-weight diffractive optical elements over conventional bulk refractive optics. Here, we present ultra-thin diffractive LIRGO micro-optics patterned by femtosecond laser direct writing (FsLDW) with high spatial resolution and wide design flexibility based on the wide parametric tunability of femtosecond pulsed lasers over conventional continuous-wave or long-pulsed lasers. By extensive parametric control of average power (10-120 mW), pulse repetition rate (1-500 kHz) and scan speed (1-100 mm/s) in FsLDW, ultra-thin micro-optics were patterned at three patterning regimes: non-thermal photoreduction regime, thermal photoreduction regime, and ablation regime. The optical performances of Fresnel zone plates (FZP) fabricated under the three regimes were evaluated and compared; the results were 0.7%, 2.4%, and 3.8% for focusing efficiency, 12.2 mu m, 13.2 mu m, and 12 mu m for focal spot size, 1.39 mm, 1.89 mm, and 1.77 mm for depth-of-focus for FZPs designed to 15 mm focal length with 10 concentric rings. This fabrication technique provides wide design flexibility to various planar LIRGO micro-optics for microfluidics, lab-on-a-chip, skin-attachable biomedical imaging, and micro photonic devices.
机译:直接激光书写已成为激光诱导的石墨烯 - 氧化物(Lirgo)的容易和经济高效的单步制造技术的有希望的技术。由于LiRO的光学性能可以在光电过程期间控制,因此激光图案化的微光学可以用作传统散装折射光学器件的轻质衍射光学元件。在这里,我们提出了由飞秒激光直接写入(FSLDW)图案化的超薄衍射LiRGO微光学,具有高空间分辨率和广泛的设计灵活性,基于传统的连续波或长脉冲激光器的飞秒脉冲激光器的宽参数可调性。通过广泛的平均功率(10-120mW)的参数控制,FSLDW中的脉冲重复率(1-500 kHz)和扫描速度(1-100mm / s),在三个图案化方案中被图案化了超薄微光学器件:非热敏光电调节,热敏光电制度和消融方案。评估并比较三个制度下制造的菲涅耳区板(FZP)的光学性能;聚焦效率为0.7%,2.4%和3.8%,焦点尺寸为12.2μm,13.2μm和12μm,1.39 mm,1.89 mm,1.77 mm,用于FZPS的深度设计为15毫米的焦距,具有10个同心环。该制造技术为微流体,芯片,芯片,皮肤连接的生物医学成像和微光学器件提供了广泛的设计灵活性。

著录项

  • 来源
    《Applied Surface Science》 |2020年第1期|146647.1-146647.10|共10页
  • 作者单位

    Nanyang Technol Univ NTU Sch Mech & Aerosp Engn Singapore Ctr 3D Printing 50 Nanyang Ave Singapore 639798 Singapore;

    Korea Inst Ind Technol Digital Mfg Proc Grp Siheung Si 429808 Gyeonggi Do South Korea;

    Nanyang Technol Univ NTU Sch Mech & Aerosp Engn Singapore Ctr 3D Printing 50 Nanyang Ave Singapore 639798 Singapore;

    Nanyang Technol Univ NTU Sch Mech & Aerosp Engn Singapore Ctr 3D Printing 50 Nanyang Ave Singapore 639798 Singapore;

    Nanyang Technol Univ NTU Sch Mech & Aerosp Engn Singapore Ctr 3D Printing 50 Nanyang Ave Singapore 639798 Singapore;

    Korea Adv Inst Sci & Technol Dept Mech Engn 291 Sci Town Daejeon 34141 South Korea;

    Nanyang Technol Univ NTU Sch Mech & Aerosp Engn Singapore Ctr 3D Printing 50 Nanyang Ave Singapore 639798 Singapore|Korea Adv Inst Sci & Technol Dept Mech Engn 291 Sci Town Daejeon 34141 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Graphene oxides; Diffractive micro-optics; Reduced graphene oxide; Fresnel zone plate; Femtosecond laser direct writing;

    机译:石墨烯氧化物;衍射微光学;氧化石墨烯;菲涅耳区板;飞秒激光直接写作;

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