Tičkūnas Titas, Perrenoud Matthieu, Butkus Simas, Gadonas Roaldas, Rekštytė Sima, Malinauskas Mangirdas, Paipulas Domas, Bellouard Yves, Sirutkaitis Valdas
Opt Express. 2017 Oct 16;25(21):26280-26288. doi: 10.1364/OE.25.026280.
We present a novel hybrid glass-polymer micromechanical sensor by combining two femtosecond laser direct writing processes: laser illumination followed by chemical etching of glass and two-photon polymerization. This incorporation of techniques demonstrates the capability of combining mechanical deformable devices made of silica with an integrated polymer structure for passive chemical sensing application. We demonstrate that such a sensor could be utilized for investigating the elastic properties of polymeric microstructures fabricated via the two-photon polymerization technique. Moreover, we show that polymeric microstructure stiffness increases when immersed in organic liquids.
我们通过结合两种飞秒激光直写工艺,即激光照射后对玻璃进行化学蚀刻和双光子聚合,展示了一种新型的混合玻璃-聚合物微机械传感器。这种技术的结合证明了将由二氧化硅制成的机械可变形装置与用于被动化学传感应用的集成聚合物结构相结合的能力。我们证明,这种传感器可用于研究通过双光子聚合技术制造的聚合物微结构的弹性特性。此外,我们表明,当浸入有机液体中时,聚合物微结构的刚度会增加。