Hydrogen sensors based on In2O3 thin films with bimetallic Pt/Pd catalysts on the surface and tin and dysprosium impuri-ties in the bulk

This paper presents the results of studying the characteristics of hydrogen sensors based on thin In2O3 films modified with tin and dysprosium with dispersed double Pt/Pd catalysts deposited on the surface. To control the content of Sn and Dy in the films, an original technology was developed, and c...

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Published in:Chemosensors Vol. 11, № 1. P. 23 (1-12)
Other Authors: Maksimova, Nadezhda K., Malinovskaya, Tatyana D. 1951-, Zhek, Valentina V., Sergeychenko, Nadezhda V., Chernikov, Evgeniy V., Lapin, Ivan N., Svetlichnyi, Valerii A.
Format: Article
Language:English
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Online Access:http://vital.lib.tsu.ru/vital/access/manager/Repository/koha:001009341
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245 1 0 |a Hydrogen sensors based on In2O3 thin films with bimetallic Pt/Pd catalysts on the surface and tin and dysprosium impuri-ties in the bulk  |c N. K. Maksimova, T. D. Malinovskaya, V. V. Zhek [et al.] 
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504 |a Библиогр.: 35 назв. 
520 3 |a This paper presents the results of studying the characteristics of hydrogen sensors based on thin In2O3 films modified with tin and dysprosium with dispersed double Pt/Pd catalysts deposited on the surface. To control the content of Sn and Dy in the films, an original technology was developed, and ceramic targets were fabricated from powders of the In-Dy-O, Dy-Sn-O, and In-Dy-Sn-O systems synthesized by the sol-gel method. Films of complex composition were obtained by RF magnetron sputtering of the corresponding targets. Structural features of the obtained thin films were studied by Raman spectroscopy. It is shown that various combinations of tin and dysprosium concentrations, as well as the presence of Pt/Pd catalysts on the surface, have a significant effect on the defectiveness of the films and the density of oxygen adsorption centers. As a result, the resistance of sensors in pure air (R0), the activation energies of the temperature dependences of R0, the bending of the energy bands at the grain boundaries of the semiconductor, and the responses to the action of hydrogen in the concentration range of 20-25,000 ppm change. A unique feature of Pt/Pd/ In2O3: Sn (0.5 at%), Dy (4.95 at%) films is their high sensitivity at 20-100 ppm and the absence of signal saturation in the region of high hydrogen concentrations of 5000-25,000 ppm, allowing them to be used to detect H2 in a wide range of concentrations. 
653 |a тонкие пленки 
653 |a оксид индия 
653 |a диспрозий 
653 |a хеморезистивные газовые датчики 
653 |a рамановская спектроскопия 
653 |a керамические мишени 
653 |a датчики водорода 
655 4 |a статьи в журналах  |9 898734 
700 1 |a Maksimova, Nadezhda K.  |9 90184 
700 1 |a Malinovskaya, Tatyana D.  |d 1951-  |9 260277 
700 1 |a Zhek, Valentina V.  |9 103710 
700 1 |a Sergeychenko, Nadezhda V.  |9 368194 
700 1 |a Chernikov, Evgeniy V.  |9 368195 
700 1 |a Lapin, Ivan N.  |9 100086 
700 1 |a Svetlichnyi, Valerii A.  |9 562988 
773 0 |t Chemosensors  |d 2023  |g Vol. 11, № 1. P. 23 (1-12)  |x 2227-9040 
852 4 |a RU-ToGU 
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856 |y Перейти в каталог НБ ТГУ  |u https://koha.lib.tsu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=1009341 
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