首页> 外文期刊>Applied Physics A: Materials Science & Processing >Single- and multi-scan femtosecond laser writing for selective chemical etching of cross section patternable glass micro-channels
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Single- and multi-scan femtosecond laser writing for selective chemical etching of cross section patternable glass micro-channels

机译:单扫描和多扫描飞秒激光写入,用于选择性化学蚀刻横截面可图案化的玻璃微通道

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We report on the fabrication of three dimensional micro-fluidic channels in fused silica glass using a combination of femtosecond laser writing and hydrofluoric acid wet etching to flexibly create various cross-sectional profiles of highly uniform shape and smooth vertical walls. The laser power, polarization, focusing depth, scanning angle and scanning speed were systematically studied with single- and multi-scan configurations to assess optimum micro-channel formation including etch rate, surface roughness, and stress-induced crack formation. We introduce the formation of vertical access-ports that extend the buried channel formation to unlimited length without tapering or distortion of the channel cross-sectional shape.
机译:我们报告了飞秒激光写入和氢氟酸湿法蚀刻相结合,在熔融石英玻璃中制造三维微流体通道的过程,以灵活地创建高度均匀的形状和光滑的垂直壁的各种截面轮廓。通过单扫描和多扫描配置系统地研究了激光功率,偏振,聚焦深度,扫描角度和扫描速度,以评估最佳的微通道形成,包括蚀刻速率,表面粗糙度和应力诱发的裂纹形成。我们介绍了垂直通道的形成,该通道将埋入式通道的形成延伸到无限长,而通道的横截面形状不会变细或变形。

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