Pd doped WO3 films prepared by sol–gel process for hydrogen sensing S Fardindoost, F Rahimi, R Ghasempour International Journal of Hydrogen Energy 35 (2), 854-860, 2010 | 176 | 2010 |
Sensitive and selective room temperature H2S gas sensor based on Au sensitized vertical ZnO nanorods with flower-like structures ZS Hosseini, A Mortezaali, S Fardindoost Journal of Alloys and Compounds 628, 222-229, 2015 | 134 | 2015 |
Graphene oxide papers in nanogenerators for self-powered humidity sensing by finger tapping F Ejehi, R Mohammadpour, E Asadian, P Sasanpour, S Fardindoost, ... Scientific reports 10 (1), 7312, 2020 | 75 | 2020 |
Exhaled breath analysis for diabetes diagnosis and monitoring: relevance, challenges and possibilities K Dixit, S Fardindoost, A Ravishankara, N Tasnim, M Hoorfar Biosensors 11 (12), 476, 2021 | 74 | 2021 |
A new approach to flexible humidity sensors using graphene quantum dots ZS Hosseini, MA Ghiass, S Fardindoost, S Hatamie Journal of Materials Chemistry C 5 (35), 8966-8973, 2017 | 65 | 2017 |
Palladium nanoparticle deposition onto the WO3 surface through hydrogen reduction of PdCl2: characterization and gasochromic properties M Ranjbar, S Fardindoost, SM Mahdavi Solar energy materials and solar cells 95 (8), 2335-2340, 2011 | 57 | 2011 |
Fabrication of Pd Doped WO3 Nanofiber as Hydrogen Sensor A Nikfarjam, S Fardindoost, AI Zad Polymers 5 (1), 45-55, 2013 | 50 | 2013 |
High-efficiency CdTe/CdS core/shell nanocrystals in water enabled by photo-induced colloidal hetero-epitaxy of CdS shelling at room temperature H Zare, M Marandi, S Fardindoost, VK Sharma, A Yeltik, O Akhavan, ... Nano research 8, 2317-2328, 2015 | 47 | 2015 |
Detecting hydrogen using graphene quantum dots/WO3 thin films S Fardindoost, ZS Hosseini, S Hatamie Materials Research Express 3 (11), 116407, 2016 | 27 | 2016 |
Hydrogen sensing properties of nanocomposite graphene oxide/Co-based metal organic frameworks (Co-MOFs@ GO) S Fardindoost, S Hatamie, AI Zad, FR Astaraei Nanotechnology 29 (1), 015501, 2017 | 26 | 2017 |
Evidence for nonradiative energy transfer in graphene-oxide-based hybrid structures A Yeltik, G Kucukayan-Dogu, B Guzelturk, S Fardindoost, Y Kelestemur, ... The Journal of Physical Chemistry C 117 (48), 25298-25304, 2013 | 26 | 2013 |
Enhancement of self-powered humidity sensing of graphene oxide–based triboelectric nanogenerators by addition of graphene oxide nanoribbons F Ejehi, R Mohammadpour, E Asadian, S Fardindoost, P Sasanpour Microchimica Acta 188, 1-13, 2021 | 22 | 2021 |
Decorated CNT based on porous silicon for hydrogen gas sensing at room temperature HG Shiraz, FR Astaraei, S Fardindoost, ZS Hosseini RSC advances 6 (50), 44410-44414, 2016 | 21 | 2016 |
A graphene/TiS3 heterojunction for resistive sensing of polar vapors at room temperature N Rafiefard, A Iraji Zad, A Esfandiar, P Sasanpour, S Fardindoost, Y Zou, ... Microchimica Acta 187, 1-11, 2020 | 17 | 2020 |
A. Iraji zad, F. Rahimi, R. Ghasempour S Fardindoost Int. J. Hydrogen Energy 35, 854-860, 2010 | 17 | 2010 |
Optimization of porous silicon conditions for DNA-based biosensing via reflectometric interference spectroscopy F Rahimi, S Fardindoost, N Ansari-Pour, F Sepehri, F Makiyan, ... Cell Journal (Yakhteh) 20 (4), 584, 2019 | 14 | 2019 |
A High‐Performance and Low‐Cost Ethanol Vapor Sensor Based on a TiS2/PVP Composite SH Hosseini‐Shokouh, S Fardindoost, AI Zad ChemistrySelect 4 (21), 6662-6666, 2019 | 13 | 2019 |
Room temperature selective sensing of aligned Ni nanowires using impedance spectroscopy M Mohammadi, S Fardindoost, M Almasi-Kashi Materials Research Express 7 (2), 025044, 2020 | 12 | 2020 |
High-performance flexible and stretchable self-powered surface engineered PDMS-TiO2 nanocomposite based humidity sensors driven by triboelectric nanogenerator with full sensing … N Rafiefard, S Fardindoost, MK Kisomi, L Shooshtari, A Irajizad, ... Sensors and Actuators B: Chemical 378, 133105, 2023 | 10 | 2023 |
Self-Powered Humidity Sensors Based on SnS2 Nanosheets L Shooshtari, N Rafiefard, M Barzegar, S Fardindoost, A Irajizad, ... ACS Applied Nano Materials 5 (11), 17123-17132, 2022 | 10 | 2022 |