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  • In Jour Smart Sensing And Intelligent Systems

 

Article | 03-November-2017

TOWARDS A NEW GAS SENSOR MICROSYSTEM USING ELECTROACTIVE POLYMERS THIN FILMS

doping gas concentration. The doping process is reversible, and the experimental results are interpreted in terms of adsorption and diffusion of the gas in the polymer, charge transfer, and transport of the injected carriers in the polymer chain. These experimental results and previous studies on other polymers and oxidizing gases demonstrate the potentiality of such materials to be used as sensitive part of gas sensors.

Allal LARBI, Bachir DJEDOU, Layachi BENNACER, Mounir BOUSBIA-SALAH

International Journal on Smart Sensing and Intelligent Systems, Volume 2 , ISSUE 3, 448–462

Article | 01-September-2012

EFFECT OF CeO2 DOPING ON THE STRUCTURE, ELECTRICAL CONDUCTIVITY AND ETHANOL GAS SENSING PROPERTIES OF NANOCRYSTALLINE ZnO SENSORS

A. M. El-Sayed, F. M. Ismail, M. H. Khder, M. E. M. Hassouna, S. M. Yakout

International Journal on Smart Sensing and Intelligent Systems, Volume 5 , ISSUE 3, 606–623

Research Article | 13-December-2017

CO2 sensing characteristics of Sm1-xBaxCoO3 (x = 0, 0.1, 0.15, 0.2) nanostructured thick film

SmCoO3 gas sensor has been developed with high sensitivity for CO2 gas by doping Ba. Nanostructured SmCoO3 and Sm1-xBaxCoO3 (x = 0, 0.1, 0.15, 0.2) were obtained by EDTAGlycol method. The operation temperature falls and sensitivity increases from 425 to 370OC when Ba concentration in SmCoO3 changes from x = 0 to x = 0.1. Ag impregnation over Sm0.9Ba0.1CoO3 sensor, on exposure to CO2 at about 360OC showed an increased sensitivity as well as the response time also decreases. The possible CO2

G.N. Chaudhari, P.R. Padole, S.V. Jagatap, M.J. Pawar

International Journal on Smart Sensing and Intelligent Systems, Volume 1 , ISSUE 3, 613–622

Article | 01-September-2012

PREPARATION AND CHARACTERIZATION OF ZIRCONIA BASED THICK FILM RESISTOR AS A AMMONIA GAS SENSOR

response to NH3 (100 ppm) at 300oC. It was observed that increase in gas concentration its sensing response goes on increasing but slowly increase being still constant for higher concentration. The sensitivity and selectivity may be further enhanced by doping other element and ZrO2 can be stabilize by mixing other oxides. The quick response and fast recovery time was recorded.

S. B. Deshmukh, R. H. Bari, G. E. Patil, D. D. Kajale, G. H. Jain, L. A. Patil

International Journal on Smart Sensing and Intelligent Systems, Volume 5 , ISSUE 3, 540–558

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