Követés
Sobhan Erfantalab
Sobhan Erfantalab
E-mail megerősítve itt: research.uwa.edu.au
Cím
Hivatkozott rá
Hivatkozott rá
Év
Determination of thermal conductivity, thermal diffusivity and specific heat capacity of porous silicon thin films using the 3ω method
S Erfantalab, G Parish, A Keating
International Journal of Heat and Mass Transfer 184, 122346, 2022
262022
Identifying volatile organic compounds by determining their diffusion and surface adsorption parameters in microfluidic channels
F Hossein-Babaei, AH Zare, V Ghafarinia, S Erfantalab
Sensors and Actuators B: Chemical 220, 607-613, 2015
192015
Thermal analysis of surface micromachined porous silicon membranes using the 3ω method: Implications for thermal sensing
S Erfantalab, P Sharma, G Parish, A Keating
Applied Thermal Engineering 222, 119965, 2023
132023
Voltammetry of Micro-Liter Electrolyte Samples on ITO Microelectrodes for Analyte Recognition
A Jenabi, AH Zare, S Erfantalab
Key Engineering Materials 605, 601-604, 2014
32014
Using multilayer structures to enhance the electrical properties of porous silicon for thermal sensing
P Sharma, S Erfantalab, J Dell, G Parish, A Keating
Applied Materials Today 35, 102004, 2023
22023
Micromachining porous silicon thin films for thermal sensing applications
P Sharma, S Erfantalab, J Dell, G Parish, A Keating
Applied Materials Today 39, 102320, 2024
2024
Characterisation of thermal and thermoelectric properties of porous silicon thin films
S Erfantalab
2023
Ambient Temperature Dependence of Diffusion Rate in a Microfluidic Channel
S Erfantalab, AH Zare, A Jenabi
Key Engineering Materials 605, 127-130, 2014
2014
Recognizing biomarker gases by monitoring the flow rates in a microfluidic channel
S Erfantalab, AH Zare
2014 22nd Iranian Conference on Electrical Engineering (ICEE), 467-471, 2014
2014
Gas recognition based on the physicochemical parameters determined by monitoring diffusion rates in microfluidic channels
AH Zare, V Ghafarinia, S Erfantalab, F Hossein-Babaei
Brunel University London, 2014
2014
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Cikkek 1–10