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3D Microfabrication in Photosensitive Glass by Femtosecond Laser

机译:3D通过飞秒激光光敏玻璃的3D微制造

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We describe a true three dimensional (3D) microfabrication of photosensitive glass by applying a femtosecond (fs) laser which works at fundamental wavelength. First, designed microstructure was written into the glass sample by a tightly focused fs laser beam (wavelength 775nm, pulse width 145±5fs, repetition rate 1kHz.); next, this sample underwent a programmed heat treatment; finally it was immersed into 10% hydrofluoric (HF) acid to take an ultrasonic bath. By this approach, true 3D microstructures with embedded microchannels and microcells are directly formed inside the glass matrix, without extra bonding or adhering procedures in those planar fabrication techniques. Such an approach combines the advantages of high precision in laser microfabrication and cost-effectiveness in chemical processing, therefore, could be a promising tool in futuristic manufacture of micro total analysis systems (μ-TAS) and micro fluidic devices.
机译:我们通过应用于基本波长的飞秒(FS)激光来描述光敏玻璃的真三维(3D)微制造。首先,通过紧密聚焦的FS激光束(波长775nm,脉冲宽度145±5fs,重复率1kHz。),将设计的微观结构用玻璃样品写入玻璃样品中;接下来,该样品经历了编程的热处理;最后将其浸入10%氢氟(HF)酸中以进行超声浴。通过这种方法,在玻璃基质内直接形成具有嵌入式微沟和微胶体的真正的3D微孔,在这些平面制造技术中没有额外的粘接或粘附程序。这种方法结合了激光微生物的高精度的优点,以及化学加工的成本效益,因此可以是微量分析系统(μ-TAS)和微流体器件的未来制造工具。

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