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Thin Chitosan Films for Optical Gas Sensors
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Zeitschriftentitel: | Key Engineering Materials |
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Personen und Körperschaften: | , , , |
In: | Key Engineering Materials, 605, 2014, S. 536-539 |
Format: | E-Article |
Sprache: | Unbestimmt |
veröffentlicht: |
Trans Tech Publications, Ltd.
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Schlagwörter: |
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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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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10.4028/www.scientific.net/kem.605.536 |
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Online |
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Trans Tech Publications, Ltd., 2014 |
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Trans Tech Publications, Ltd., 2014 |
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1662-9795 |
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1662-9795 |
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2014 |
publisher |
Trans Tech Publications, Ltd. |
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ai |
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series |
Key Engineering Materials |
source_id |
49 |
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. |
author_sort | mironenko, alexander y. |
container_start_page | 536 |
container_title | Key Engineering Materials |
container_volume | 605 |
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> |
doi_str_mv | 10.4028/www.scientific.net/kem.605.536 |
facet_avail | Online |
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imprint | Trans Tech Publications, Ltd., 2014 |
imprint_str_mv | Trans Tech Publications, Ltd., 2014 |
institution | DE-D161, DE-Gla1, DE-Zi4, DE-15, DE-Pl11, DE-Rs1, DE-105, DE-14, DE-Ch1, DE-L229, DE-D275, DE-Bn3, DE-Brt1 |
issn | 1662-9795 |
issn_str_mv | 1662-9795 |
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match_str | mironenko2014thinchitosanfilmsforopticalgassensors |
mega_collection | Trans Tech Publications, Ltd. (CrossRef) |
physical | 536-539 |
publishDate | 2014 |
publishDateSort | 2014 |
publisher | Trans Tech Publications, Ltd. |
record_format | ai |
recordtype | ai |
series | Key Engineering Materials |
source_id | 49 |
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 |