Saeed Mohammadi
Engineering · Purdue University West Lafayette
Publications
177
Citations
2,674
Est. group size
—
Recurring co-author estimate
Active years
23
Publishing since 2003
Saeed Mohammadi's work focuses on designing and simulating advanced semiconductor devices, especially tunnel field-effect transistors (TFETs) and related nanoscale transistor and biosensor structures used for low-power electronics, biosensing, and terahertz sensing applications. The research combines device simulation (TCAD) and circuit design methods, spanning topics such as novel transistor architectures, radio-frequency circuits, and material characterization (e.g., graphene, ZnO nanostructures). This work is relevant to students interested in semiconductor device physics, integrated circuit design, and nanoelectronic sensor technologies.
Publication output has grown from roughly 4-9 papers per year in the late 2010s to a higher and fairly steady pace of about 9-12 papers per year from 2022 through 2025.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Investigating vertical charge plasma tunnel field effect transistors beyond semiclassical assumptions
Scientific Reports · 2025
- TCAD-based evaluations of a high-performance, low-power dielectric modulated BioTFET with dopingless tunneling junctions
Micro and Nanostructures · 2025
- A Terahertz Tunable Plasmonic Absorber Based on Step-Shaped Graphene Patches for Sensing Applications
Plasmonics · 2025
- Quantum-Interference-Enhanced Thermoelectricity Performance of Armchair X-ene (X = Si, Ge, Sn, As, Sb, Bi) NR-Based FESBTs as a Potential Sensing Mechanism for DNA Nucleobases Considering Electroburnt and Nanopore Defects
Journal of Electronic Materials · 2025
- A Stacked Class-F VCO in 45NM SOI CMOS
2025
- Boosting Performance of Charge Plasma–Based TFETs
2025
- Experimental and Theoretical Study of metal Doped Dielectric Capacitors Composd with M–GO/(h-BN)n/M–GO(M = Be, B): A High Capacitance at Micro-Scale
Russian Journal of Physical Chemistry B · 2025
- An Overview of Physico Chemical Processes for Microfiltration, Ultrafiltration, and Nano-Filtration Membranes, Using Navier–Stokes Equations and Computational Fluid Dynamics
Russian Journal of Physical Chemistry B · 2025
- A Muti-Functional High Linearity Power Amplifier/Mixer in 22nm CMOS FD-SOI
2025
- Electrostatically doped WSe <sub>2</sub> TFET: critical design rules for scalable and high-frequency logic applications
Semiconductor Science and Technology · 2025
- A tunable graphene dual mode absorber for efficient terahertz radiation absorption and sensing applications
Diamond and Related Materials · 2024
- Fringe-fields-modulated double-gate tunnel-FET biosensor
Scientific Reports · 2024
- A review on ductile fracture prediction of cracked/notched components: The distinct and simplifying roles of the equivalent material concept and fictitious material concept
Theoretical and Applied Fracture Mechanics · 2024
- Experimental and Theoretical Studies of ZnO Nanotubes: an Approach to Chemical Physics Characterization of ZnONTs, Including Morphology, Piezoelectric, and Density of States
Russian Journal of Physical Chemistry B · 2024
- Synthesis of Nano C60-[Fe3O4/SiO2/GeO2] as Efficient Catalyst Disinfection
Russian Journal of Physical Chemistry B · 2024
- IEEE Transactions on Electron Devices×9
- Scientific Reports×4
- Russian Journal of Physical Chemistry B×4
- Semiconductor Science and Technology×3
- Micro and Nanostructures×3
- John A. Chandy
Engineering · Indiana University
- Mark Lundstrom
Engineering · Purdue University West Lafayette
- Fan Chen
Engineering · Indiana University
- Gerhard Klimeck
Engineering · Purdue University West Lafayette
- Tillmann Kubis
Engineering · Purdue University West Lafayette
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
Claim or correct this profile