Multi-element gas sensor based on surface plasmon resonance: recognition of alcohols by using calixarene films

This work is devoted to development of a multi-element gas sensor based on surface plasmon resonance (SPR) to recognize some alcohols. As sensitive layers capable to change their optical properties when interacting with volatile alcohol molecules, we investigated bulk-porous sorbents – calixarene...

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Бібліографічні деталі
Дата:2011
Автори: Kostyukevych, K.V., Khristosenko, R.V., Shirshov, Yu.M., Kostyukevych, S.A., Samoylov, A.V., Kalchenko, V.I.
Формат: Стаття
Мова:English
Опубліковано: Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України 2011
Назва видання:Semiconductor Physics Quantum Electronics & Optoelectronics
Онлайн доступ:http://dspace.nbuv.gov.ua/handle/123456789/117767
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Назва журналу:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Цитувати:Multi-element gas sensor based on surface plasmon resonance: recognition of alcohols by using calixarene films / K.V. Kostyukevych, R.V. Khristosenko, Yu.M. Shirshov, S.A. Kostyukevych, A.V. Samoylov, V.I. Kalchenko // Semiconductor Physics Quantum Electronics & Optoelectronics. — 2011. — Т. 14, № 3. — С. 313-320. — Бібліогр.: 28 назв. — англ.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
id irk-123456789-117767
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spelling irk-123456789-1177672017-05-27T03:03:23Z Multi-element gas sensor based on surface plasmon resonance: recognition of alcohols by using calixarene films Kostyukevych, K.V. Khristosenko, R.V. Shirshov, Yu.M. Kostyukevych, S.A. Samoylov, A.V. Kalchenko, V.I. This work is devoted to development of a multi-element gas sensor based on surface plasmon resonance (SPR) to recognize some alcohols. As sensitive layers capable to change their optical properties when interacting with volatile alcohol molecules, we investigated bulk-porous sorbents – calixarenes (tret-butyl-calix[4,6,8]arenes (С[4]А, С[6]А, С[8]А), tetra-amyl-calix[4] resorchinolaren (C[4]Re). Each calixarene was studied to obtain its kinetic concentration SPR characteristics for interaction with ethanol, isopropanol and penthanol vapors. To realize SPR measurements, the sensitive calixarene films (d ∼ 100 nm) were deposited on a gold film (d ∼ 45 nm) by using the method of thermal evaporation in vacuum. Experimental multi-element SPR device was designed as based on the analysis of TV image obtained for the studied array of calixarene films and tested using saturated ethanol vapors. 2011 Article Multi-element gas sensor based on surface plasmon resonance: recognition of alcohols by using calixarene films / K.V. Kostyukevych, R.V. Khristosenko, Yu.M. Shirshov, S.A. Kostyukevych, A.V. Samoylov, V.I. Kalchenko // Semiconductor Physics Quantum Electronics & Optoelectronics. — 2011. — Т. 14, № 3. — С. 313-320. — Бібліогр.: 28 назв. — англ. 1560-8034 PACS 73.20. Mf, 07.07.Df http://dspace.nbuv.gov.ua/handle/123456789/117767 en Semiconductor Physics Quantum Electronics & Optoelectronics Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
language English
description This work is devoted to development of a multi-element gas sensor based on surface plasmon resonance (SPR) to recognize some alcohols. As sensitive layers capable to change their optical properties when interacting with volatile alcohol molecules, we investigated bulk-porous sorbents – calixarenes (tret-butyl-calix[4,6,8]arenes (С[4]А, С[6]А, С[8]А), tetra-amyl-calix[4] resorchinolaren (C[4]Re). Each calixarene was studied to obtain its kinetic concentration SPR characteristics for interaction with ethanol, isopropanol and penthanol vapors. To realize SPR measurements, the sensitive calixarene films (d ∼ 100 nm) were deposited on a gold film (d ∼ 45 nm) by using the method of thermal evaporation in vacuum. Experimental multi-element SPR device was designed as based on the analysis of TV image obtained for the studied array of calixarene films and tested using saturated ethanol vapors.
format Article
author Kostyukevych, K.V.
Khristosenko, R.V.
Shirshov, Yu.M.
Kostyukevych, S.A.
Samoylov, A.V.
Kalchenko, V.I.
spellingShingle Kostyukevych, K.V.
Khristosenko, R.V.
Shirshov, Yu.M.
Kostyukevych, S.A.
Samoylov, A.V.
Kalchenko, V.I.
Multi-element gas sensor based on surface plasmon resonance: recognition of alcohols by using calixarene films
Semiconductor Physics Quantum Electronics & Optoelectronics
author_facet Kostyukevych, K.V.
Khristosenko, R.V.
Shirshov, Yu.M.
Kostyukevych, S.A.
Samoylov, A.V.
Kalchenko, V.I.
author_sort Kostyukevych, K.V.
title Multi-element gas sensor based on surface plasmon resonance: recognition of alcohols by using calixarene films
title_short Multi-element gas sensor based on surface plasmon resonance: recognition of alcohols by using calixarene films
title_full Multi-element gas sensor based on surface plasmon resonance: recognition of alcohols by using calixarene films
title_fullStr Multi-element gas sensor based on surface plasmon resonance: recognition of alcohols by using calixarene films
title_full_unstemmed Multi-element gas sensor based on surface plasmon resonance: recognition of alcohols by using calixarene films
title_sort multi-element gas sensor based on surface plasmon resonance: recognition of alcohols by using calixarene films
publisher Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України
publishDate 2011
url http://dspace.nbuv.gov.ua/handle/123456789/117767
citation_txt Multi-element gas sensor based on surface plasmon resonance: recognition of alcohols by using calixarene films / K.V. Kostyukevych, R.V. Khristosenko, Yu.M. Shirshov, S.A. Kostyukevych, A.V. Samoylov, V.I. Kalchenko // Semiconductor Physics Quantum Electronics & Optoelectronics. — 2011. — Т. 14, № 3. — С. 313-320. — Бібліогр.: 28 назв. — англ.
series Semiconductor Physics Quantum Electronics & Optoelectronics
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AT samoylovav multielementgassensorbasedonsurfaceplasmonresonancerecognitionofalcoholsbyusingcalixarenefilms
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first_indexed 2023-10-18T20:30:35Z
last_indexed 2023-10-18T20:30:35Z
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