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Internal Laser Writing of High-Aspect-Ratio Microfluidic Structures in Silicate Glasses for Lab-on-a-Chip Applications

机译:用于芯片实验室应用的硅酸盐玻璃中高纵横比微流体结构的内部激光写入

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Femtosecond laser direct writing is unique in allowing for fabrication of 3D micro- and nanofluidic structures, thereby enabling rapid and efficient manipulation of fluidic dynamics in 3D space to realize innovative functionalities. Here, I discuss the challenges in producing fully functional and highly integrated 3D micro- and nanofluidic systems with potential applications ranging from chemical and biological analyses to investigations of nanofluidic behaviors. In particular, I review the achievements we have made in the past decade, which have led to 3D microchannels with controllable cross-sectional profiles and large aspect ratios, 3D nanofluidic channels with widths of several tens of nanometers, and smooth inner walls with roughness on the order of ~1 nm. Integration of the microfluidics with other functional microcomponents including microoptics and microelectrodes will also be discussed, followed by conclusions and the future perspective.
机译:飞秒激光直接写入的独特之处在于可以制造3D微流体和纳米流体结构,从而能够快速有效地操纵3D空间中的流体动力学,以实现创新的功能。在这里,我将讨论生产功能齐全且高度集成的3D微流体和纳米流体系统所面临的挑战,其潜在应用范围从化学和生物学分析到纳米流体行为的研究。特别是,我回顾了我们在过去十年中取得的成就,这些成就已导致具有可控制的横截面轮廓和大的长宽比的3D微通道,宽度为几十纳米的3D纳米流体通道以及光滑的内壁(具有粗糙的表面) 〜1 nm的数量级。还将讨论微流体与其他功能性微组件(包括微光学和微电极)的集成,然后给出结论和未来展望。

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