Bonnel Morgane, Marzouk Ibtihel, Riassetto David, Morand Alain, Bucci Davide, Langlet Michel
LMGP, Grenoble INP, CNRS, University Grenoble Alpes, 38000 Grenoble, France.
IMEP-LAHC, Grenoble INP, CNRS, University Grenoble Alpes, 38000 Grenoble, France.
Materials (Basel). 2022 Jan 27;15(3):979. doi: 10.3390/ma15030979.
Channel waveguides with diffraction gratings at their input and output for light injection and extraction, respectively, are extensively exploited for optical and photonic applications. In this paper, we report for the first time on such an architecture on glass entirely elaborated by sol-gel processing using a titanium-oxide-based photoresist that can be imprinted through a single photolithography step. This work is more particularly focused on a fluorescent architecture including channel waveguides doped with a ruthenium-complex fluorophore (tris(4,7-diphenyl-1,10-phenanthroline)ruthenium(II), Rudpp). The study demonstrates that this original sol-gel micro-structured architecture is well adapted to efficient channel waveguide/diffraction grating coupling and propagation of the fluorescence excitation and emission signals in the core of the channel waveguide. It demonstrates, in particular, a relatively large tolerance of several degrees in the angular injection fiber positioning and an important axial and vertical fiber spatial positioning tolerance of more than 100 µm at the Rudpp emission wavelength. The measurements also indicate that, in the conditions tested in this work, a Rudpp concentration of around 0.1 mM and a channel waveguide length of 2 to 5 mm offer the best trade-off in terms of excitation signal propagation and emission signal detection. This work constitutes a promising preliminary step toward the integration of our architecture into a microfluidic platform for fluorescence measurement in a liquid medium and waveguiding configuration.
分别在其输入和输出端带有用于光注入和光提取的衍射光栅的通道波导,被广泛应用于光学和光子学领域。在本文中,我们首次报道了一种完全通过溶胶 - 凝胶工艺在玻璃上制备的结构,该工艺使用基于氧化钛的光刻胶,可通过单个光刻步骤进行压印。这项工作更特别地聚焦于一种荧光结构,该结构包括掺杂有钌配合物荧光团(三(4,7 - 二苯基 - 1,10 - 菲咯啉)钌(II),Rudpp)的通道波导。研究表明,这种原始的溶胶 - 凝胶微结构架构非常适合高效的通道波导/衍射光栅耦合以及荧光激发和发射信号在通道波导芯中的传播。特别是,它在角度注入光纤定位方面表现出相对较大的几度容忍度,并且在Rudpp发射波长处具有超过100 µm的重要轴向和垂直光纤空间定位容忍度。测量还表明,在本工作测试的条件下,约0.1 mM的Rudpp浓度和2至5 mm的通道波导长度在激发信号传播和发射信号检测方面提供了最佳权衡。这项工作是将我们的架构集成到用于液体介质中荧光测量和波导配置的微流体平台的一个有前景的初步步骤。