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Label-Free Water Sensors Using Hybrid Polymer-Dielectric Mid-Infrared Optical Waveguides
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Label-Free Water Sensors Using Hybrid Polymer-Dielectric Mid-Infrared Optical Waveguides

Pao Tai Lin, James Giammarco, Nikolay Borodinov, Mykhailo Savchak, Vivek Singh, Lionel C. Kimerling, Dawn T. H. Tan, Kathleen A. Richardson, Igor Luzinov, Anu Agarwal, …
ACS applied materials & interfaces, Vol.7(21), pp.11189-11194
03/06/2015
PMID: 25924561

Abstract

Materials Science Materials Science, Multidisciplinary Nanoscience & Nanotechnology Science & Technology Science & Technology - Other Topics Technology
A chip-scale mid-IR water sensor was developed using silicon nitride (SiN) waveguides coated with poly(glycidyl methacrylate) (PGMA). The label-free detection was conducted at lambda = 2.6-2.7 mu m because this spectral region overlaps with the characteristic O-H stretch absorption while being transparent to PGMA and SiN. Through the design of a hybrid waveguide structure, we were able to tailor the mid-IR evanescent wave into the PGMA layer and the surrounding water and, consequently, to enhance the light-analyte interaction. A 7.6 times enhancement of sensitivity is experimentally demonstrated and explained by material integration engineering as well as waveguide mode analysis. Our sensor platform made by polymer-dielectric hybrids can be applied to other regions of the mid-IR spectrum to probe other analytes and can ultimately achieve a multispectral sensor on-a-chip.

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