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Maryam Ghodrati
Maryam Ghodrati
Ph.D. in Electrical Engineering, Lorestan University
Dirección de correo verificada de fe.lu.ac.ir - Página principal
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Nanoscale sensor-based tunneling carbon nanotube transistor for toxic gases detection: a first-principle study
M Ghodrati, A Farmani, A Mir
IEEE Sensors Journal 19 (17), 7373-7377, 2019
562019
Improving band-to-band tunneling in a tunneling carbon nanotube field effect transistor by multi-level development of impurities in the drain region
A Naderi, M Ghodrati
The European Physical Journal Plus 132, 1-11, 2017
252017
Carbon nanotube field effect transistors–based gas sensors
M Ghodrati, A Mir, A Farmani
Nanosensors for Smart Cities, 171-183, 2020
242020
Cut off frequency variation by ambient heating in tunneling pin CNTFETs
A Naderi, M Ghodrati
ECS Journal of Solid State Science and Technology 7 (2), M6, 2018
192018
Non-destructive label-free biomaterials detection using tunneling carbon nanotube-based biosensor
M Ghodrati, A Mir, A Farmani
IEEE Sensors Journal 21 (7), 8847-8854, 2021
172021
New structure of tunneling carbon nanotube FET with electrical junction in part of drain region and step impurity distribution pattern
M Ghodrati, A Mir, A Naderi
AEU-International Journal of Electronics and Communications 117, 153102, 2020
172020
An efficient structure for T-CNTFETs with intrinsic-n-doped impurity distribution pattern in drain region
A Naderi, M Ghodrati
Turkish Journal of Electrical Engineering and Computer Sciences 26 (5), 2335 …, 2018
162018
Sensitivity-Enhanced Surface Plasmon Resonance Sensor with Bimetal/ Tungsten Disulfide (WS2)/MXene (Ti3C2Tx) Hybrid Structure
M Ghodrati, A Mir, A Farmani
Plasmonics 17 (5), 1973-1984, 2022
142022
Proposal of a doping-less tunneling carbon nanotube field-effect transistor
M Ghodrati, A Mir, A Naderi
Materials Science and Engineering: B 265, 115016, 2021
142021
The use of a Gaussian doping distribution in the channel region to improve the performance of a tunneling carbon nanotube field-effect transistor
A Naderi, M Ghodrati, S Baniardalani
Journal of Computational Electronics 19, 283-290, 2020
122020
Numerical analysis of a surface plasmon resonance based biosensor using molybdenum disulfide, molybdenum trioxide, and MXene for the diagnosis of diabetes
M Ghodrati, A Mir, A Farmani
Diamond and Related Materials 132, 109633, 2023
62023
Improving the performance of a doping-less carbon nanotube FET with dual junction source and drain regions: numerical studies
M Ghodrati, A Mir
Journal of Circuits, Systems and Computers 31 (10), 2250182, 2022
52022
Proposing of SPR biosensor based on 2D Ti3C2Tx MXene for uric acid detection ımmobilized by uricase enzyme
M Ghodrati, A Mir, A Farmani
Journal of Computational Electronics 22 (1), 560-569, 2023
42023
2D materials/heterostructures/metasurfaces in plasmonic sensing and biosensing
M Ghodrati, A Mir, A Farmani
Plasmonics-Based Optical Sensors and Detectors, 339-371, 2024
12024
A review of recent advances in surface plasmon resonance biosensors based on Kretschmann configuration with a focus on two-dimensional materials
M Ghodrati
Journal of Lasers in Medicine 20 (1), 53-70, 2024
2024
Proposal of a plasmonic sensor based on 2D material Ti3C2Tx MXene in terahertz frequency
M Ghodrati, A Mir, A Farmani
2022
Improvement in the Performance of Tunneling Carbon Nanotube Field Effects Transistor in Presence of Underlap
A Naderi, M Ghodrati
Journal of Modeling in Engineering, 2019
2019
Novel Carbon Nanotube Field Effect Transistor with Lightly Doped channel and Dual Section Dielectric
A Naderi, M Ghodrati
Journal of Iranian Association of Electrical and Electronics Engineers, 2017
2017
Improving the Angular Sensitivity of a Surface Plasmon Resonance Biosensor Based on bilayer of Ag and MXene: a Simulation-Based Approach
M Ghodrati, A Mir, A Farmani
FDTD Analysis of a High-Sensitive SPR Biosensor employing 2D Material MXene (Ti3C2Tx) for Biosensing Applications
M Ghodrati, A Mir, A Farmani
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Artículos 1–20