Publication | Closed Access
Direct laser writing of sub-50 nm nanofluidic channels buried in glass for three-dimensional micro-nanofluidic integration
135
Citations
46
References
2013
Year
Direct Laser WritingEngineeringDna AnalysisBiofabricationOrgan-on-a-chipBiomedical EngineeringMicro-optical ComponentDna NanotechnologySilicate GlassMicroscale SystemMicrofluidicsNanofluidic ChannelsBiophysicsNanotechnologyNanofluidicsLaser-assisted Deposition3D PrintingMicrofabricationApplied PhysicsLab-on-a-chipThree-dimensional Micro-nanofluidic IntegrationNanofabricationBiomems
We report on the fabrication of nanofluidic channels directly buried in silicate glass with transverse widths down to less than 50 nm using three-dimensional (3D) femtosecond laser direct writing. Using this technique, integrated micro-nanofluidic systems have been produced by simultaneously writing micro- and nanofluidic channels arranged into various 3D configurations in glass substrates. The fabricated micro- and nanofluidic systems have been used to demonstrate DNA analysis, e.g. stretching of DNA molecules. Our technique offers new opportunities to develop novel 3D micro-nanofluidic systems for a variety of lab-on-a-chip applications.
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