“Metal oxide-based heterostructures for gas sensors”-A review D Zappa, V Galstyan, N Kaur, HMMM Arachchige, O Sisman, E Comini Analytica Chimica Acta 1039, 1-23, 2018 | 318 | 2018 |
Nanostructured ZnO chemical gas sensors V Galstyan, E Comini, C Baratto, G Faglia, G Sberveglieri Ceramics International 41 (10), 14239-14244, 2015 | 251 | 2015 |
TiO2 Nanotubes: Recent Advances in Synthesis and Gas Sensing Properties V Galstyan, E Comini, G Faglia, G Sberveglieri Sensors 13 (11), 14813-14838, 2013 | 231 | 2013 |
Metal oxide nanoscience and nanotechnology for chemical sensors E Comini, C Baratto, I Concina, G Faglia, M Falasconi, M Ferroni, ... Sensors and Actuators B: Chemical 179, 3-20, 2013 | 225 | 2013 |
Metal oxide gas sensors, a survey of selectivity issues addressed at the SENSOR Lab, Brescia (Italy) A Ponzoni, C Baratto, N Cattabiani, M Falasconi, V Galstyan, ... Sensors 17 (4), 714, 2017 | 179 | 2017 |
Metal oxide nanostructures in food applications: Quality control and packaging V Galstyan, MP Bhandari, V Sberveglieri, G Sberveglieri, E Comini Chemosensors 6 (2), 16, 2018 | 122 | 2018 |
Reduced graphene oxide/ZnO nanocomposite for application in chemical gas sensors V Galstyan, E Comini, I Kholmanov, G Faglia, G Sberveglieri RSC advances 6 (41), 34225-34232, 2016 | 119 | 2016 |
“Quantum dots: Perspectives in next-generation chemical gas sensors”‒A review V Galstyan Analytica Chimica Acta 1152, 238192, 2021 | 90 | 2021 |
Vertically Aligned TiO2 Nanotubes on Plastic Substrates for Flexible Solar Cells V Galstyan, A Vomiero, I Concina, A Braga, M Brisotto, E Bontempi, ... Small 7 (17), 2437-2442, 2011 | 82 | 2011 |
TiO 2 nanotubular and nanoporous arrays by electrochemical anodization on different substrates V Galstyan, A Vomiero, E Comini, G Faglia, G Sberveglieri Rsc Advances 1 (6), 1038-1044, 2011 | 81 | 2011 |
Flexible dye sensitized solar cells using TiO 2 nanotubes A Vomiero, V Galstyan, A Braga, I Concina, M Brisotto, E Bontempi, ... Energy & Environmental Science 4 (9), 3408-3413, 2011 | 79 | 2011 |
Porous TiO2-Based Gas Sensors for Cyber Chemical Systems to Provide Security and Medical Diagnosis V Galstyan Sensors 17 (12), 2947, 2017 | 74 | 2017 |
Graphene oxide and its chemical nature: Multi-stage interactions between the oxygen and graphene VA Nebol'Sin, V Galstyan, YE Silina Surfaces and Interfaces 21, 100763, 2020 | 66 | 2020 |
Progress towards chemical gas sensors: Nanowires and 2D semiconductors V Galstyan, A Moumen, GWC Kumarage, E Comini Sensors and Actuators B: Chemical 357, 131466, 2022 | 59 | 2022 |
Fabrication and investigation of gas sensing properties of Nb-doped TiO2 nanotubular arrays V Galstyan, E Comini, G Faglia, A Vomiero, L Borgese, E Bontempi, ... Nanotechnology 23 (23), 235706, 2012 | 58 | 2012 |
Reduced Graphene Oxide–TiO2 Nanotube Composite: Comprehensive Study for Gas-Sensing Applications V Galstyan, A Ponzoni, I Kholmanov, MM Natile, E Comini, S Nematov, ... ACS Applied Nano Materials 1 (12), 7098-7105, 2018 | 57 | 2018 |
Finely Tuned SnO2 Nanoparticles for Efficient Detection of Reducing and Oxidizing Gases: The Influence of Alkali Metal Cation on Gas-Sensing Properties SH Lee, V Galstyan, A Ponzoni, I Gonzalo-Juan, R Riedel, MA Dourges, ... ACS applied materials & interfaces 10 (12), 10173-10184, 2018 | 57 | 2018 |
Investigation of Reduced Graphene Oxide and a Nb-Doped TiO2 Nanotube Hybrid Structure To Improve the Gas-Sensing Response and Selectivity V Galstyan, A Ponzoni, I Kholmanov, MM Natile, E Comini, S Nematov, ... ACS sensors 4 (8), 2094-2100, 2019 | 53 | 2019 |
TiO2/Cu2O/CuO Multi-Nanolayers as Sensors for H2 and Volatile Organic Compounds: An Experimental and Theoretical Investigation O Lupan, D Santos-Carballal, N Ababii, N Magariu, S Hansen, A Vahl, ... ACS Applied Materials & Interfaces 13 (27), 32363-32380, 2021 | 48 | 2021 |
Detection of food and skin pathogen microbiota by means of an electronic nose based on metal oxide chemiresistors EN Carmona, V Sberveglieri, A Ponzoni, V Galstyan, D Zappa, ... Sensors and Actuators B: Chemical 238, 1224-1230, 2017 | 48 | 2017 |