Optical Sensing of Humidity Using Polymer Top-Covered Bragg Stacks and Polymer/Metal Thin Film Structures

Thin films with nanometer thicknesses in the range 100&#8722;400 nm are prepared from double hydrophilic copolymers of complex branched structures containing poly(<i>N</i>,<i>N</i>-dimethyl acrylamide) and poly(ethylene oxide) blocks and are used as humidity sensitive med...

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Main Authors: Katerina Lazarova, Darinka Christova, Rosen Georgiev, Biliana Georgieva, Tsvetanka Babeva
Format: Article
Language:English
Published: MDPI AG 2019-06-01
Series:Nanomaterials
Subjects:
Online Access:https://www.mdpi.com/2079-4991/9/6/875
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spelling doaj-6adbfc529476468e87fd5f41e822ca402020-11-25T01:49:49ZengMDPI AGNanomaterials2079-49912019-06-019687510.3390/nano9060875nano9060875Optical Sensing of Humidity Using Polymer Top-Covered Bragg Stacks and Polymer/Metal Thin Film StructuresKaterina Lazarova0Darinka Christova1Rosen Georgiev2Biliana Georgieva3Tsvetanka Babeva4Institute of Optical Materials and Technologies ‘‘Acad. J. Malinowski’’, Bulgarian Academy of Sciences, Akad. G. Bonchev str., bl. 109, 1113 Sofia, BulgariaInstitute of Polymers, Bulgarian Academy of Sciences, Akad. G. Bonchev Str., bl. 103-A, 1113 Sofia, BulgariaInstitute of Optical Materials and Technologies ‘‘Acad. J. Malinowski’’, Bulgarian Academy of Sciences, Akad. G. Bonchev str., bl. 109, 1113 Sofia, BulgariaInstitute of Optical Materials and Technologies ‘‘Acad. J. Malinowski’’, Bulgarian Academy of Sciences, Akad. G. Bonchev str., bl. 109, 1113 Sofia, BulgariaInstitute of Optical Materials and Technologies ‘‘Acad. J. Malinowski’’, Bulgarian Academy of Sciences, Akad. G. Bonchev str., bl. 109, 1113 Sofia, BulgariaThin films with nanometer thicknesses in the range 100&#8722;400 nm are prepared from double hydrophilic copolymers of complex branched structures containing poly(<i>N</i>,<i>N</i>-dimethyl acrylamide) and poly(ethylene oxide) blocks and are used as humidity sensitive media. Instead of using glass or opaque wafer for substrates, polymer thin films are deposited on Bragg stacks and thin (30 nm) sputtered Au&#8722;Pd films thus bringing color for the colorless polymer/glass system and enabling transmittance measurements for humidity sensing. All samples are characterized by transmittance measurements at different humidity levels in the range from 5% to 90% relative humidity. Additionally, the humidity induced color change is studied by calculating the color coordinates at different relative humidity using measured spectra of transmittance or reflectance. A special attention is paid to the selection of wavelength(s) of measurements and discriminating between different humidity levels when sensing is performed by measuring transmittance at fixed wavelengths. The influence of initial film thickness, sensor architecture, and measuring configuration on sensitivity is studied. The potential and advantages of using top covered Bragg stacks and polymer/metal thin film structures as humidity sensors with simple optical read-outs are demonstrated and discussed.https://www.mdpi.com/2079-4991/9/6/875optical sensinghumidityBragg stacksbranched polymers
collection DOAJ
language English
format Article
sources DOAJ
author Katerina Lazarova
Darinka Christova
Rosen Georgiev
Biliana Georgieva
Tsvetanka Babeva
spellingShingle Katerina Lazarova
Darinka Christova
Rosen Georgiev
Biliana Georgieva
Tsvetanka Babeva
Optical Sensing of Humidity Using Polymer Top-Covered Bragg Stacks and Polymer/Metal Thin Film Structures
Nanomaterials
optical sensing
humidity
Bragg stacks
branched polymers
author_facet Katerina Lazarova
Darinka Christova
Rosen Georgiev
Biliana Georgieva
Tsvetanka Babeva
author_sort Katerina Lazarova
title Optical Sensing of Humidity Using Polymer Top-Covered Bragg Stacks and Polymer/Metal Thin Film Structures
title_short Optical Sensing of Humidity Using Polymer Top-Covered Bragg Stacks and Polymer/Metal Thin Film Structures
title_full Optical Sensing of Humidity Using Polymer Top-Covered Bragg Stacks and Polymer/Metal Thin Film Structures
title_fullStr Optical Sensing of Humidity Using Polymer Top-Covered Bragg Stacks and Polymer/Metal Thin Film Structures
title_full_unstemmed Optical Sensing of Humidity Using Polymer Top-Covered Bragg Stacks and Polymer/Metal Thin Film Structures
title_sort optical sensing of humidity using polymer top-covered bragg stacks and polymer/metal thin film structures
publisher MDPI AG
series Nanomaterials
issn 2079-4991
publishDate 2019-06-01
description Thin films with nanometer thicknesses in the range 100&#8722;400 nm are prepared from double hydrophilic copolymers of complex branched structures containing poly(<i>N</i>,<i>N</i>-dimethyl acrylamide) and poly(ethylene oxide) blocks and are used as humidity sensitive media. Instead of using glass or opaque wafer for substrates, polymer thin films are deposited on Bragg stacks and thin (30 nm) sputtered Au&#8722;Pd films thus bringing color for the colorless polymer/glass system and enabling transmittance measurements for humidity sensing. All samples are characterized by transmittance measurements at different humidity levels in the range from 5% to 90% relative humidity. Additionally, the humidity induced color change is studied by calculating the color coordinates at different relative humidity using measured spectra of transmittance or reflectance. A special attention is paid to the selection of wavelength(s) of measurements and discriminating between different humidity levels when sensing is performed by measuring transmittance at fixed wavelengths. The influence of initial film thickness, sensor architecture, and measuring configuration on sensitivity is studied. The potential and advantages of using top covered Bragg stacks and polymer/metal thin film structures as humidity sensors with simple optical read-outs are demonstrated and discussed.
topic optical sensing
humidity
Bragg stacks
branched polymers
url https://www.mdpi.com/2079-4991/9/6/875
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