Mohammad Taghi Ahmadi

M. T. Ahmadi, tenured Associate Professor of Electrical Engineering at Urmia univercity, received his Ph.D. degree in Electrical Engineering and completed his Post Doctoral program, at Makmal Nano Universiti Teknologi Malaysia. Dr. Ahmadi was awarded Universiti Teknologi Malaysia (UTM) chancellor award, UTM Academic excellence award, UTM Post Doctoral Fellowship Award, Best PhD student Award (international student center Iranian student society). His research interests include nanoscale non-classical device simulation, modeling and characterization. He has published more than 170 papers in internationally refereed indexed journals and conference proceedings.

Publications

Handbook of Research on Nanoelectronic Sensor Modeling and Applications
Mohammad Taghi Ahmadi, Razali Ismail, Sohail Anwar. © 2017. 579 pages.
Nanoelectronics are a diverse set of materials and devices that are so small that quantum mechanics need to be applied to their function. The possibilities these devices present...
Graphene Based-Biosensor: Graphene Based Electrolyte Gated Graphene Field Effect Transistor
Mohammad Javad Kiani, M. H. Shahrokh Abadi, Meisam Rahmani, Mohammad Taghi Ahmadi, F. K. Che Harun, Karamollah Bagherifard. © 2017. 29 pages.
Because of unique electrical properties of graphene, it has been employed in many applications, such as batteries, energy storage devices and biosensors. In this chapter...
Graphene and CNT Field Effect Transistors Based Biosensor Models
Ali Hosseingholi Pourasl, Mohammad Taghi Ahmadi, Meisam Rahmani, Razali Ismail, Michael Loong Pengl Tan. © 2017. 40 pages.
In this chapter, novel ideas of graphene and CNT based electrical biosensors are provided. A liquid gated graphene field effect transistor (LG-GFET) based biosensor model is...
Carbon Materials Based Ion Sensitive Field Effect Transistor (ISFET): The Emerging Potentials of Nanostructured Carbon-Based ISFET with High Sensitivity
Mohammad Javad Kiani, M. H. Shahrokh Abadi, Meisam Rahmani, Mohammad Taghi Ahmadi, F. K. Che Harun, S.N. Hedayat, S.H. Yaghoobian. © 2017. 27 pages.
Graphene and SWCNT-based Ion Sensitive FET (ISFET) as a novel material with organic nature and ionic liquid gate is intrinsically sensitive to pH changes. pH is an important...
Surface Plasmon Resonance-Based Sensor Modeling
Bahar Meshginqalam, Mohammad Taghi Ahmadi, Hamid Toloue Ajili Tousi, Arash Sabatyan, Anthony Centeno. © 2017. 34 pages.
Exceptional optical and electrical characteristics of graphene based materials attract significant interest of the researchers to develop sensing center of surface Plasmon...
Fast Neuron Detection
Hadi Kasani, Mohammad Taghi Ahmadi, Rasoul Khoda-Bakhsh, Dariush Rezaei Ochbelagh. © 2017. 28 pages.
In many research fields and industry such as nuclear physics, notably nuclear technology, fusion plasma diagnostics, radiotherapy and radiation protection, it is very substantial...