Jonušauskas, LinasRekštyte, SimaBuividas, RičardasButkus, SimasGadonas, RoaldasJuodkazis, SauliusMalinauskas, Mangirdas
An approach employing ultrafast laser hybrid subtractive-additive microfabrication, which combines ablation, three-dimensional nanolithography, and welding, is proposed for the realization of a lab-on-chip (LOC) device. A single amplified Yb:KGW femtosecond (fs)-pulsed laser source is shown to be suitable for fabricating microgrooves in glass slabs, polymerization of fine-meshes microfilter out of hybrid organic-inorganic photopolymer SZ2080 inside them, and, finally, sealing the whole chip with cover glass into a single monolithic piece. The created microfluidic device proved its particle sorting function by separating 1- and 10-μm polystyrene spheres in an aqueous mixture. All together, this proves that laser microfabrication based on a single amplified fs laser source is a flexible and versatile approach for the hybrid subtractive-additive manufacturing of functional mesoscale multimaterial LOC devices.
Jonušauskas, LinasRekštyte, SimaBuividas, RičardasButkus, SimasGadonas, RoaldasJuodkazis, SauliusMalinauskas, Mangirdas
Linas JonušauskasSima RekštytėRičardas BuividasSimas ButkusR. GadonasSaulius JuodkazisMangirdas Malinauskas
Linas JonušauskasSima RekštytėRičardas BuivydasSimas ButkusDomas PaipulasR. GadonasSaulius JuodkazisMangirdas Malinauskas
Ya ChengKoji SugiokaKatsumi Midorikawa
Huan MinhChangyoung RyuJung Bin In