Ehsan Marzbanrad
Cited by
Cited by
WO3-based NO2 sensors fabricated through low frequency AC electrophoretic deposition
EK Heidari, C Zamani, E Marzbanrad, B Raissi, S Nazarpour
Sensors and Actuators B: Chemical 146 (1), 165-170, 2010
Enhanced photocatalytic degradation of dyes by TiO2 nanobelts with hierarchical structures
A Hu, R Liang, X Zhang, S Kurdi, D Luong, H Huang, P Peng, ...
Journal of Photochemistry and Photobiology A: Chemistry 256, 7-15, 2013
Electrophoretic deposition of SnO2 nanoparticles using low frequency AC electric fields
AR Gardeshzadeh, B Raissi, E Marzbanrad
Materials Letters 62 (10-11), 1697-1699, 2008
Combination of asymmetric supercapacitor utilizing activated carbon and nickel oxide with cobalt polypyridyl-based dye-sensitized solar cell
N Bagheri, A Aghaei, MY Ghotbi, E Marzbanrad, N Vlachopoulos, ...
Electrochimica Acta 143, 390-397, 2014
NO2 gas sensor fabrication through AC electrophoretic deposition from electrospun In2O3 nanoribbons
PS Khiabani, A Hosseinmardi, E Marzbanrad, S Ghashghaie, C Zamani, ...
Sensors and Actuators B: Chemical 162 (1), 102-107, 2012
Nanocasting synthesis of ultrafine WO 3 nanoparticles for gas sensing applications
EK Heidari, E Marzbanrad, C Zamani, B Raissi
Nanoscale Research Letters 5 (2), 370-373, 2010
Effect of Al2O3 phases on the enhancement of thermal conductivity and viscosity of nanofluids in engine oil
M Vasheghani, E Marzbanrad, C Zamani, M Aminy, B Raissi, ...
Heat and mass transfer 47 (11), 1401-1405, 2011
Binder-jet powder-bed additive manufacturing (3D printing) of thick graphene-based electrodes
A Azhari, E Marzbanrad, D Yilman, E Toyserkani, MA Pope
Carbon 119, 257-266, 2017
Room temperature nanojoining of triangular and hexagonal silver nanodisks
E Marzbanrad, A Hu, B Zhao, Y Zhou
The Journal of Physical Chemistry C 117 (32), 16665-16676, 2013
Fabrication of resistive CO gas sensor based on SnO2 nanopowders via low frequency AC electrophoretic deposition
AR Gardeshzadeh, B Raissi, E Marzbanrad, H Mohebbi
Journal of Materials Science: Materials in Electronics 20 (2), 127-131, 2009
Electrical Conductive Adhesives Enhanced with High‐A spect‐R atio Silver Nanobelts
BM Amoli, E Marzbanrad, A Hu, YN Zhou, B Zhao
Macromolecular Materials and Engineering 299 (6), 739-747, 2014
Preparation of Si powder thick films by low frequency alternating electrophoretic deposition
AR Gardeshzadeh, B Raissi, E Marzbanrad
Journal of materials science 43 (7), 2507-2508, 2008
How morphology and surface crystal texture affect thermal stability of a metallic nanoparticle: the case of silver nanobelts and pentagonal silver nanowires
E Marzbanrad, G Rivers, P Peng, B Zhao, NY Zhou
Physical Chemistry Chemical Physics 17 (1), 315-324, 2015
Microwave hybrid synthesis of silicon carbide nanopowders
T Ebadzadeh, E Marzban-Rad
Materials Characterization 60 (1), 69-72, 2009
On the effect of spatter particles distribution on the quality of Hastelloy X parts made by laser powder-bed fusion additive manufacturing
R Esmaeilizadeh, U Ali, A Keshavarzkermani, Y Mahmoodkhani, ...
Journal of Manufacturing Processes 37, 11-20, 2019
Fabrication of undoped-TiO2 nanostructure-based NO2 high temperature gas sensor using low frequency AC electrophoretic deposition method
J Esmaeilzadeh, E Marzbanrad, C Zamani, B Raissi
Sensors and Actuators B: Chemical 161 (1), 401-405, 2012
Sorting ZnO particles of different shapes with low frequency AC electric fields
R Riahifar, E Marzbanrad, B Raissi, C Zamani, M Kazemzad, A Aghaei
Materials Letters 65 (4), 632-635, 2011
Effect of parameters on deposition pattern of ceramic nanoparticles in non-uniform AC electric field
R Riahifar, B Raissi, E Marzbanrad, C Zamani
Journal of Materials Science: Materials in Electronics 22 (1), 40-46, 2011
Role of substrate potential on filling the gap between two planar parallel electrodes in electrophoretic deposition
R Riahifar, E Marzbanrad, BR Dehkordi, C Zamani
Materials Letters 64 (5), 559-561, 2010
Particle size separation by alternating electrophoretic deposition
B Raissi, E Marzbanrad, AR Gardeshzadeh
Journal of the European Ceramic Society 29 (15), 3289-3291, 2009
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