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Ishac Kandas
Ishac Kandas
Associate Professor, Engineering Mathematical and Physics department, Alexandria University, Egypt.
Verified email at kcst.edu.kw
Title
Cited by
Cited by
Year
Stretchable nanofibers of polyvinylidenefluoride (PVDF)/thermoplastic polyurethane (TPU) nanocomposite to support piezoelectric response via mechanical elasticity
N Shehata, R Nair, R Boualayan, I Kandas, A Masrani, E Elnabawy, ...
Scientific Reports 12 (1), 8335, 2022
362022
Piezoelastic PVDF/TPU nanofibrous composite membrane: Fabrication and characterization
E Elnabawy, AH Hassanain, N Shehata, A Popelka, R Nair, S Yousef, ...
Polymers 11 (10), 1634, 2019
352019
Efficiency enhancement of perovskite solar cells with plasmonic nanoparticles: a simulation study
A Hajjiah, I Kandas, N Shehata
Materials 11 (9), 1626, 2018
322018
A comprehensive study on EDFA characteristics: temperature impact
JA Bebawi, I Kandas, MA El-Osairy, MH Aly
Applied Sciences 8 (9), 1640, 2018
282018
Lanthanide-doped ceria nanoparticles as fluorescence-quenching probes for dissolved oxygen
N Shehata, K Meehan, I Ashry, I Kandas, Y Xu
Sensors and Actuators B: Chemical 183, 179-186, 2013
252013
Acoustic energy harvesting and sensing via electrospun PVDF nanofiber membrane
N Shehata, AH Hassanin, E Elnabawy, R Nair, SA Bhat, I Kandas
Sensors 20 (11), 3111, 2020
232020
Nano-enriched and autonomous sensing framework for dissolved oxygen
N Shehata, M Azab, I Kandas, K Meehan
Sensors 15 (8), 20193-20203, 2015
192015
Perovskite solar cell with added gold/silver nanoparticles: Enhanced optical and electrical characteristics
A Hajjiah, H Badran, I Kandas, N Shehata
Energies 13 (15), 3854, 2020
172020
Piezoresponse, mechanical, and electrical characteristics of synthetic spider silk nanofibers
N Shehata, I Kandas, I Hassounah, P Sobolčiak, I Krupa, M Mrlik, ...
Nanomaterials 8 (8), 585, 2018
162018
DFT and AMPS-1D simulation analysis of all-perovskite solar cells based on CsPbI3/FAPbI3 bilayer structure
A Hajjiah, M Gamal, I Kandas, NE Gorji, N Shehata
Solar Energy Materials and Solar Cells 248, 112026, 2022
152022
High quality factor silica microspheres functionalized with self-assembled nanomaterials
I Kandas, B Zhang, C Daengngam, I Ashry, CY Jao, B Peng, SK Ozdemir, ...
Optics express 21 (18), 20601-20610, 2013
152013
Irreversible adsorption of gold nanospheres on fiber optical tapers and microspheres
J Yi, CY Jao, ILN Kandas, B Liu, Y Xu, HD Robinson
Applied Physics Letters 100 (15), 2012
142012
Solution blow spinning of piezoelectric nanofiber mat for detecting mechanical and acoustic signals
E Elnabawy, M Farag, A Soliman, K Mahmoud, N Shehata, R Nair, ...
Journal of applied polymer science 138 (45), 51322, 2021
132021
In-Situ Gold–Ceria Nanoparticles: Superior Optical Fluorescence Quenching Sensor for Dissolved Oxygen
N Shehata, I Kandas, E Samir
Nanomaterials 10 (2), 314, 2020
122020
Efficiency improvement of up-conversion process of plasmonic-enhanced Er-doped-NaYF4 nanoparticles under IR excitation
S Elrafei, I Kandas, N Shehata, E Samir
Optics Express 26 (19), 25492-25506, 2018
122018
Flexible piezoelectric PVDF/TPU nanofibrous membranes produced by solution blow spinning
B Le, N Omran, AH Hassanin, I Kandas, M Gamal, N Shehata, I Shyha
journal of materials research and technology 24, 5032-5041, 2023
112023
Optical fluorescent spider silk electrospun nanofibers with embedded cerium oxide nanoparticles
I Kandas, N Shehata, I Hassounah, P Sobolčiak, I Krupa, R Lewis
Journal of Nanophotonics 12 (2), 026016-026016, 2018
112018
Fabrication and characterization of periodically patterned silica fiber structures for enhanced second-order nonlinearity
C Daengngam, I Kandas, I Ashry, JA Lee, A Wang, JR Heflin, Y Xu
Optics express 23 (6), 8113-8127, 2015
112015
Plasmonic-ceria nanoparticles as fluorescence intensity and lifetime quenching optical sensor
N Shehata, E Samir, I Kandas
Sensors 18 (9), 2818, 2018
102018
Innovative antibacterial electrospun nanofibers mats depending on piezoelectric generation
AM Khalil, AH Hassanin, MI El-Kaliuoby, N Omran, M Gamal, ...
Scientific Reports 12 (1), 21788, 2022
92022
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