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Three-dimensional femtosecond laser micromachining of photosensitive glass for biomicrochips

机译:生物微芯片光敏玻璃的三维飞秒激光微加工

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Internal modification of transparent materials such as glass can be carried out using multiphoton absorption induced by a femtosecond (fs) laser. The fs-laser modification followed by thermal treatment and successive chemical wet etching in a hydrofluoric (HF) acid solution forms three-dimensional (3D) hollow microstructures embedded in photosensitive glass. This technique is a powerful method for directly fabricating 3D microfluidic structures inside a photosensitive glass microchip. We used fabricated microchips, referred to as a nanoaquarium, for dynamic observations of living microorganisms. In addition, the present technique can also be used to form microoptical components such as micromirrors and microlenses inside the photosensitive glass, since the fabricated structures have optically flat surfaces. The integration of microfluidics and microoptical components in a single glass chip yields biophotonic microchips, in other words, optofluidics, which provide high sensitivity in absorption and fluorescence measurements of small volumes of liquid samples.
机译:可以使用飞秒(fs)激光诱导的多光子吸收来对透明材料(例如玻璃)进行内部修饰。 fs激光修改,随后的热处理以及在氢氟酸(HF)溶液中的连续化学湿法蚀刻形成了嵌入光敏玻璃中的三维(3D)中空微结构。该技术是直接在感光玻璃微芯片内部制造3D微流体结构的有效方法。我们使用制造的微芯片(称为纳米水族箱)动态观察活的微生物。另外,由于所制造的结构具有光学平坦的表面,因此本技术还可以用于在感光玻璃内部形成微光学部件,例如微镜和微透镜。将微流体和微光学组件集成在单个玻璃芯片中可产生生物光子微芯片,换句话说,就是光流体学,它在少量液体样品的吸收和荧光测量中具有很高的灵敏度。

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