Electrical properties of reactively sputtered WO3 thin films as ozone gas sensor K Aguir, C Lemire, DBB Lollman Sensors and actuators B: Chemical 84 (1), 1-5, 2002 | 235 | 2002 |
The role of surface oxygen vacancies upon WO3 conductivity M Gillet, C Lemire, E Gillet, K Aguir Surface Science 532, 519-525, 2003 | 179 | 2003 |
The structure and electrical conductivity of vacuum-annealed WO3 thin films M Gillet, K Aguir, C Lemire, E Gillet, K Schierbaum Thin Solid Films 467 (1-2), 239-246, 2004 | 172 | 2004 |
Characterization of ozone sensors based on WO3 reactively sputtered films: influence of O2 concentration in the sputtering gas, and working temperature M Bendahan, R Boulmani, JL Seguin, K Aguir Sensors and Actuators B: Chemical 100 (3), 320-324, 2004 | 160 | 2004 |
Impedance spectroscopy on WO3 gas sensor A Labidi, C Jacolin, M Bendahan, A Abdelghani, J Guerin, K Aguir, ... Sensors and Actuators B: Chemical 106 (2), 713-718, 2005 | 146 | 2005 |
Ethanol and ozone sensing characteristics of WO3 based sensors activated by Au and Pd A Labidi, E Gillet, R Delamare, M Maaref, K Aguir Sensors and actuators B: Chemical 120 (1), 338-345, 2006 | 139 | 2006 |
Adsorption–desorption noise in gas sensors: Modelling using Langmuir and Wolkenstein models for adsorption S Gomri, JL Seguin, J Guerin, K Aguir Sensors and Actuators B: Chemical 114 (1), 451-459, 2006 | 136 | 2006 |
A novel ozone gas sensor based on one-dimensional (1D) α-Ag 2 WO 4 nanostructures LF Da Silva, AC Catto, W Avansi, LS Cavalcante, J Andrés, K Aguir, ... Nanoscale 6 (8), 4058-4062, 2014 | 130 | 2014 |
UV-enhanced ozone gas sensing response of ZnO-SnO2 heterojunctions at room temperature LF da Silva, JC M’peko, AC Catto, S Bernardini, VR Mastelaro, K Aguir, ... Sensors and Actuators B: Chemical 240, 573-579, 2017 | 125 | 2017 |
One-step approach for preparing ozone gas sensors based on hierarchical NiCo 2 O 4 structures N Joshi, LF Da Silva, H Jadhav, JC M'Peko, BBM Torres, K Aguir, ... RSC advances 6 (95), 92655-92662, 2016 | 118 | 2016 |
Acetone gas sensor based on α-Ag2WO4 nanorods obtained via a microwave-assisted hydrothermal route LF Da Silva, AC Catto, W Avansi Jr, LS Cavalcante, VR Mastelaro, ... Journal of Alloys and Compounds 683, 186-190, 2016 | 92 | 2016 |
Correlation between rf-sputtering parameters and WO3 sensor response towards ozone R Boulmani, M Bendahan, C Lambert-Mauriat, M Gillet, K Aguir Sensors and Actuators B: Chemical 125 (2), 622-627, 2007 | 88 | 2007 |
Reactive RF magnetron sputtering deposition of WO3 thin films C Lemire, DBB Lollman, A Al Mohammad, E Gillet, K Aguir Sensors and Actuators B: Chemical 84 (1), 43-48, 2002 | 87 | 2002 |
Development of an ammonia gas sensor M Bendahan, P Lauque, JL Seguin, K Aguir, P Knauth Sensors and Actuators B: Chemical 95 (1-3), 170-176, 2003 | 83 | 2003 |
An easy method of preparing ozone gas sensors based on ZnO nanorods AC Catto, LF Da Silva, C Ribeiro, S Bernardini, K Aguir, E Longo, ... Rsc advances 5 (25), 19528-19533, 2015 | 82 | 2015 |
dc and ac characterizations of WO3 sensors under ethanol vapors A Labidi, C Lambert-Mauriat, C Jacolin, M Bendahan, M Maaref, K Aguir Sensors and Actuators B: Chemical 119 (2), 374-379, 2006 | 81 | 2006 |
High performance of a gas identification system using sensor array and temperature modulation KA Ngo, P Lauque, K Aguir Sensors and Actuators B: Chemical 124 (1), 209-216, 2007 | 80 | 2007 |
Grain size effect in sputtered tungsten trioxide thin films on the sensitivity to ozone M Gillet, K Aguir, M Bendahan, P Mennini Thin Solid Films 484 (1-2), 358-363, 2005 | 78 | 2005 |
Local Structure and Surface Properties of CoxZn1–xO Thin Films for Ozone Gas Sensing AC Catto, LF Silva, MIB Bernardi, S Bernardini, K Aguir, E Longo, ... ACS applied materials & interfaces 8 (39), 26066-26072, 2016 | 72 | 2016 |
Ab initio study of oxygen point defects on tungsten trioxide surface C Lambert-Mauriat, V Oison, L Saadi, K Aguir Surface science 606 (1-2), 40-45, 2012 | 72 | 2012 |