Nanocomposite of Ag-Polyacrylonitryle as a Selective Chlorine Sensor

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Gas-sensing elements based on Ag-containing polyacrylonitrile (PAN) films using different temperature and time modes of a two stage IR-pyrolysis have been fabricated. It has been investigated that the gas sensitivity of the samples depends on the composition of the original film-forming solution and on the process parameters of forming the film material. It has been studied that the samples demonstrate gas-sensing properties to Cl2 at room temperature. The outcome of this study is that Ag-containing PAN films can be considered as one of the most promising material to be used in electronic engineering.

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135-140

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September 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] V. Dixit, S.C.K. Misra, B.S. Sharma, Carbon monoxide sensitivity of vacuum deposited polyaniline semiconducting thin films, Sensors and Actuators. B. 104 (2005) 90–93.

DOI: 10.1016/j.snb.2004.05.001

Google Scholar

[2] U. Lange, N.V. Roznyatovskaya, V.M. Mirsky, Conducting polymers in chemical sensors and arrays, Analytica Chimica Acta. 614 (2008) 1–26.

DOI: 10.1016/j.aca.2008.02.068

Google Scholar

[3] T.A. Bednaya, S.P. Konovalenko, T.V. Semenistaya, V.V. Petrov, A.N. Korolev, Izgotovlenie gazochuvstvitel'nyh jelementov sensora dioksid azota i hlora na osnove kobal'tsoderzhashhego poliakrilonitrila, Izvestija vysshih uchebnyh zavedenij. Jelektronika. 4(96) (2012).

Google Scholar

[4] A.N. Korolev, T.V. Semenistaya, I.S. Al'-Hadrami, T.N. Nazarova, V.V. Petrov, Issledovanie sensornyh svojstv med'soderzhashhego poliakrilonitrila, Izv. Vuzov Jelektronika. 1 (2008) 20-25.

Google Scholar

[5] V.V. Petrov, T.N. Nazarova, N.F. Kopylova, O.V. Zabluda, I. Kisilev, M. Bruns, Issledovanie fiziko-himicheskih i jelektrofizicheskih svojstv, gazochuvstvitel'nyh harakteristik nanokompozitnyh plenok sostava SiO2-SnOx-CuOy, Nano- i mikrosistemnaja tehnika. 8 (2010).

Google Scholar

[6] V.V. Petrov, T.N. Nazarova, A.N. Korolev, A.T. Kozakov, N.K. Plugotarenko, Formirovanie tonkih gazochuvstvitel'nyh oksidnyh plenok smeshannogo sostava, legirovannyh serebrom, FizHOM. 3 (2005) 58-62.

Google Scholar

[7] G. Je. Jalovega, V.A. Shmatko, T.N. Nazarova, V.V. Petrov, O.V. Zabluda, Issledovanie fazovogo sostava nanokompozitnyh materialov SiO2CuOx, metodami rentgenovskoj spektroskopii pogloshhenija i fotojelektronnoj spektroskopii, Izvestija VUZov. Materialy jelektronnoj tehniki. 4 (2010).

Google Scholar

[8] Lu Ping, Ju.A. Gorbatenko, T.V. Semenistaya, E.V. Vorob'ev, A.N. Korolev, Poluchenie chuvstvitel'nyh jelementov sensorov gazov na osnove plenok poliakrilonitrila i serebrosoderzhashhego poliakrilonitrila i opredelenie ih harakteristik, Nano- i mikrosistemnaja tehnika. 9 (2011).

Google Scholar

[9] A.N. Korolev, T.V. Semenistaya, I.S. Al'-Hadrami, T.P. Loginova, M. Bruns, Nanokompozitnye plenki med'soderzhashhego poliakrilonitrila: sostav, struktura, morfologija poverhnosti, Perspektivnye materialy. 5 (2010) 52–56.

Google Scholar

[10] L.A. Obvinceva, Poluprovodnikovye metalloksidnye sensory dlja opredelenija himicheski aktivnyh gazovyh primesej v vozdushnoj srede, Rossijskij himicheskij zhurnal. 2LII (2008) 113-121.

Google Scholar

[11] I.S. Al'-Hadrami, A.N. Korolev, L.M. Zemcov, G.P. Karpacheva, T.V. Semenistaya, Issledovanie jelektroprovodnosti IK-pirolizovannogo med'soderzhashhego poliakrilonitrila, Materialy jelektronnoj tehniki. 1 (2008) 14–17.

Google Scholar

[12] T.P. Loginova, L.M. Bronshtej, E. Sh. Mirzoevai [i dr. ], Issledovanie termicheskih prevrashhenij metallokarbonil'nyh poliakrilonitrilov metodom IK-spektroskopii i rentgenovskoj difrakcii v bol'shih uglah, Vysokomolekuljarnye soedinenija. 35 (1993).

Google Scholar

[13] A.A. Dulov, A.A. Slinkin, Organicheskie poluprovodniki, Nauka, Moscow, (1970).

Google Scholar

[14] L.M. Zemcov, G.P. Karpacheva, Himicheskie prevrashhenija poliakrilonitrila pod dejstviem nekogerentnogo infrakrasnogo izluchenija, Vysokomolekul. soed. 6(36) (1994) 919-924.

Google Scholar