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首页> 外文期刊>Journal of Micromechanics and Microengineering >Self-formed cylindrical microcapillaries through surface migration of silicon and their application to single-cell analysis
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Self-formed cylindrical microcapillaries through surface migration of silicon and their application to single-cell analysis

机译:通过硅的表面迁移自形成的圆柱形微毛细管及其在单细胞分析中的应用

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Surface migration of monocrystalline silicon has been applied to demonstrate self-formed cylindrical microcapillaries with diameters from 0.8 to 2.8 μm based on the microstructured substrate topography. The microcapillaries are entirely enclosed in silicon and can be conveniently etched to create fluidic access ports and microchannels for their subsequent integration into functional microfluidic devices. Moreover, the microcapillaries can be thermally oxidized through their access ports with silica walls remain intact upon release from surrounding silicon in an effort to enhance optical clarity. Straight microcapillaries and microcapillaries with perpendicular turns and crossings (junctions) have all been fabricated and validated for fluidic continuity with a fluorescein solution pumped through. The utility of the microcapillaries has been showcased on particle traps in which biological cells are probed for single-cell impedance spectroscopy. The approach disclosed, given its full compatibility with semiconductor device fabrication, offers great potential towards intelligent cell and molecule-based devices merging microelectronics and microfluidics.
机译:基于微结构化衬底的形貌,单晶硅的表面迁移已被用于证明直径为0.8至2.8μm的自形成圆柱形微毛细管。微毛细管完全封闭在硅中,可以方便地蚀刻以形成流体进入端口和微通道,以便随后将其集成到功能性微流体设备中。此外,微毛细管可通过其进入端口被热氧化,而二氧化硅壁在从周围的硅中释放时保持完整,以增强光学清晰度。笔直的微毛细管和具有垂直转弯和交叉(交点)的微毛细管均已制成,并通过泵送的荧光素溶液验证了流体的连续性。微毛细管的效用已经展示在粒子阱上,在该粒子阱中探测生物细胞以进行单细胞阻抗谱分析。鉴于其与半导体器件制造的完全兼容性,所公开的方法为融合微电子学和微流体学的基于智能单元和分子的器件提供了巨大的潜力。

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