author_facet Mironenko, Alexander Y.
Sergeev, Alexander A.
Voznesensky, Sergey
Bratskaya, Svetlana Y.
Mironenko, Alexander Y.
Sergeev, Alexander A.
Voznesensky, Sergey
Bratskaya, Svetlana Y.
author Mironenko, Alexander Y.
Sergeev, Alexander A.
Voznesensky, Sergey
Bratskaya, Svetlana Y.
spellingShingle Mironenko, Alexander Y.
Sergeev, Alexander A.
Voznesensky, Sergey
Bratskaya, Svetlana Y.
Key Engineering Materials
Thin Chitosan Films for Optical Gas Sensors
Mechanical Engineering
Mechanics of Materials
General Materials Science
author_sort mironenko, alexander y.
spelling Mironenko, Alexander Y. Sergeev, Alexander A. Voznesensky, Sergey Bratskaya, Svetlana Y. 1662-9795 Trans Tech Publications, Ltd. Mechanical Engineering Mechanics of Materials General Materials Science http://dx.doi.org/10.4028/www.scientific.net/kem.605.536 <jats:p>Here we report on fabrication of integrated-optical sensors for relative humidity and ammonia detection based on natural polysaccharide chitosan. The sensing properties of the fabricated sensor to gaseous ammonia are presented. The sensor exhibits a linear response in the range of 1-300 ppm with the response time less than 1 second. It has been shown that 1 μm-thick chitosan-based waveguide film allows highly sensitive detection of RH level.</jats:p> Thin Chitosan Films for Optical Gas Sensors Key Engineering Materials
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title Thin Chitosan Films for Optical Gas Sensors
title_unstemmed Thin Chitosan Films for Optical Gas Sensors
title_full Thin Chitosan Films for Optical Gas Sensors
title_fullStr Thin Chitosan Films for Optical Gas Sensors
title_full_unstemmed Thin Chitosan Films for Optical Gas Sensors
title_short Thin Chitosan Films for Optical Gas Sensors
title_sort thin chitosan films for optical gas sensors
topic Mechanical Engineering
Mechanics of Materials
General Materials Science
url http://dx.doi.org/10.4028/www.scientific.net/kem.605.536
publishDate 2014
physical 536-539
description <jats:p>Here we report on fabrication of integrated-optical sensors for relative humidity and ammonia detection based on natural polysaccharide chitosan. The sensing properties of the fabricated sensor to gaseous ammonia are presented. The sensor exhibits a linear response in the range of 1-300 ppm with the response time less than 1 second. It has been shown that 1 μm-thick chitosan-based waveguide film allows highly sensitive detection of RH level.</jats:p>
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author Mironenko, Alexander Y., Sergeev, Alexander A., Voznesensky, Sergey, Bratskaya, Svetlana Y.
author_facet Mironenko, Alexander Y., Sergeev, Alexander A., Voznesensky, Sergey, Bratskaya, Svetlana Y., Mironenko, Alexander Y., Sergeev, Alexander A., Voznesensky, Sergey, Bratskaya, Svetlana Y.
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container_start_page 536
container_title Key Engineering Materials
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description <jats:p>Here we report on fabrication of integrated-optical sensors for relative humidity and ammonia detection based on natural polysaccharide chitosan. The sensing properties of the fabricated sensor to gaseous ammonia are presented. The sensor exhibits a linear response in the range of 1-300 ppm with the response time less than 1 second. It has been shown that 1 μm-thick chitosan-based waveguide film allows highly sensitive detection of RH level.</jats:p>
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spelling Mironenko, Alexander Y. Sergeev, Alexander A. Voznesensky, Sergey Bratskaya, Svetlana Y. 1662-9795 Trans Tech Publications, Ltd. Mechanical Engineering Mechanics of Materials General Materials Science http://dx.doi.org/10.4028/www.scientific.net/kem.605.536 <jats:p>Here we report on fabrication of integrated-optical sensors for relative humidity and ammonia detection based on natural polysaccharide chitosan. The sensing properties of the fabricated sensor to gaseous ammonia are presented. The sensor exhibits a linear response in the range of 1-300 ppm with the response time less than 1 second. It has been shown that 1 μm-thick chitosan-based waveguide film allows highly sensitive detection of RH level.</jats:p> Thin Chitosan Films for Optical Gas Sensors Key Engineering Materials
spellingShingle Mironenko, Alexander Y., Sergeev, Alexander A., Voznesensky, Sergey, Bratskaya, Svetlana Y., Key Engineering Materials, Thin Chitosan Films for Optical Gas Sensors, Mechanical Engineering, Mechanics of Materials, General Materials Science
title Thin Chitosan Films for Optical Gas Sensors
title_full Thin Chitosan Films for Optical Gas Sensors
title_fullStr Thin Chitosan Films for Optical Gas Sensors
title_full_unstemmed Thin Chitosan Films for Optical Gas Sensors
title_short Thin Chitosan Films for Optical Gas Sensors
title_sort thin chitosan films for optical gas sensors
title_unstemmed Thin Chitosan Films for Optical Gas Sensors
topic Mechanical Engineering, Mechanics of Materials, General Materials Science
url http://dx.doi.org/10.4028/www.scientific.net/kem.605.536