
Muneer, Sadid, Ph.D.
Associate Professor & Undergraduate Program CoordinatorEmail : sadidmuneer@eee.uiu.ac.bd
Thermoelectric Effects in Nanoscale Transport
Asymmetric melting of Si micro-wire under electrical stress. Generation-transport-recombination (GTR) of minority carriers is one of the contributors of this thermoelectric effect (More…).
Phase Change Memory: Novel Device Structures and Electrothermal Finite Element Simulation
Design of vacuum-insulated self-aligned nanowire phase-change memory devices to minimize the current requirement and suppress crosstalk (More…).
Material Parameter Extraction from Nanoscale Device Measurements
Effective activation energy from room temperature to melt calculated from the measured resistivity of metastable amorphous GST (More…).
Full publication list here.
Book Chapter:
1. R. S. Khan, N. Noor, C. Jin, J. Scoggin, Z. Woods, S. Muneer, A. Ciardullo, P. H. Nguyen, A. Gokirmak, M. van Dijk, and H. Silva, “Phase Change Memory and Its Applications in Hardware Security.” in: Security Opportunities by Nano Devices and Emerging Technologies, CRC Press, 2017, doi: 10.1201/9781315265056.
Journal:
8. S. Muneer, G. Bakan, A. Gokirmak, and H. Silva, “Incorporation of Generation-Transport-Recombination (GTR) in Semiconductor Simulations.” in Journal of Applied Physics, vol. 129, pp. 055702-1:13, Feb 2021, doi: 10.1063/5.0037411.
7. N. Noor, S. Muneer, R. S. Khan, A. Gorbenko, L. Adnane, M. T. B. Kashem, J. Scoggin, F. Dirisaglik, A. Cywar, A. Gokirmak, and H. Silva, “Reset Variability in Phase Change Memory for Hardware Security Applications.” in IEEE Transactions on Nanotechnology, vol. 20, pp. 75-82, Nov 2020, doi: 10.1109/TNANO.2020.3041400.
6. N. Noor, S. Muneer, R. S. Khan, A. Gorbenko, and H. Silva, “Enhancing Programming Variability in Multi-bit Phase Change Memory Cells for Security,” in IEEE Transactions on Nanotechnology, vol. 19, 820-828, Nov 2020, doi: 10.1109/TNANO.2020.3037097.
5. N. Noor, S. Muneer, R. S. Khan, A. Gorbenko, and H. Silva, “Amorphized length and variability in phase-change memory line cells,” Beilstein Journal of Nanotechnology 11, no. 1, 1644-1654, Oct 2020, doi: 10.3762/bjnano.11.147.
4. S. Muneer, J. Scoggin, F. Dirisaglik, L. Adnane, A. Cywar, G. Bakan, K. Cil, C. Lam, H. Silva, and A. Gokirmak, “Activation Energy of Metastable Amorphous Ge2Sb2Te5 from Room Temperature to Melt.” AIP Advances, 8, issue 6, 065314-1:8, Jun 13, 2018, doi: 10.1063/1.5035085.
3. A. Deschenes, S. Muneer, M. Akbulut, A. Gokirmak, and H. Silva, “Analysis of Self-heating of Thermally Assisted Spin-transfer Torque Magnetic Random Access Memory.” Beilstein Journal of Nanotechnology, 7, 1676–1683, Nov 11, 2016, doi: 10.3762/bjnano.7.160.
2. F. Dirisaglik, G. Bakan, Z. Jurado, S. Muneer, M. Akbulut, J. Rarey, L. Sullivan, M. Wennberg, A. King, L. Zhang, R. Nowak, C. Lam, H. Silva, and A. Gokirmak, “High Speed, High Temperature Electrical Characterization of Phase Change Materials: Metastable Phases, Crystallization Dynamics, and Resistance drift.” Nanoscale, 7, issue 40, 16625-16630, Sep 22, 2015, doi: 10.1039/C5NR05512A.
1. S. Muneer, A. Gokirmak, and H. Silva, “Vacuum-Insulated Self-aligned Nanowire Phase-change Memory Devices.” IEEE Transactions on Electron Devices (TED), 62, issue 5, 1668-1671, Apr 20, 2015, doi: 10.1109/TED.2015.2414716.
E-print:
1. R. S. Khan, N. Kanan, C. Jin, J. Scoggin, N. Noor, S. Muneer, F. Dirisaglik, P. H. Nguyen, H. Silva, M. van Dijk, and A. Gokirmak, “Intrinsically Reliable and Lightweight Physical Obfuscated Keys.” arXiv preprint arXiv:1703.07427, 2017 (link).
Conference Proceedings:
6. M. T. B. Kashem, S. Muneer, L. Adnane, F Dirisaglik, A. Gokirmak and H. Silva, “Calculation of the Energy Band Diagram and Estimation of Electronic Transport Parameters of Metastable Amorphous Ge2Sb2Te5.” Talk & proceeding, 241st ECS Meeting, Vancouver, Canada, May 29, 2022 – June 2, 2022, doi: 10.1149/10801.0029ecst.
5. A. Gorbenko, N. Noor, S. Muneer, R. S. Khan, F. Dirisaglik, A. Cywar, B. Shakya, D. Forte, M. v. Dijk, A. Gokirmak, H. Silva, “Resistance Drift and Crystallization in Suspended and On-oxide Phase Change Memory Line Cells.” Talk, 19th IEEE Conference on Nanotechnology (IEEE-NANO), ThOBO5.1, Parisian Macao, Macau, China, Jul 22-26, 2019, doi: 10.1109/NANO46743.2019.8993884.
4. N. Noor, R. S. Khan, S. Muneer, H. Silva, “Tamper Evidence of SEM Imaging Attack in Phase Change Memory Nanodevices.” Talk & proceeding, 19th IEEE Conference on Nanotechnology (IEEE-NANO), ThOBO4.3, Parisian Macao, Macau, China, Jul 22-26, 2019, doi: 10.1109/NANO46743.2019.8993903.
3. R. S. Khan, N. Noor, C. Jin, S. Muneer, F. Dirisaglik, A. Cywar, P. H. Nguyen, M. v. Dijk, A. Gokirmak, H. Silva, “Exploiting Lithography Limits for Hardware Security Applications.” Talk & proceeding, 19th IEEE Conference on Nanotechnology (IEEE-NANO), WeOAO1.3, Parisian Macao, Macau, China, Jul 22-26, 2019 (nominated for best paper award), doi: 10.1109/NANO46743.2019.8993902.
2. F. Dirisaglik, G. Bakan, S. Muneer, N. Williams, M. Akbulut, H. Silva, and A. Gokirmak, “Electrical Pump-Probe Characterization Technique for Phase Change Materials.” Talk & proceeding, 74th Device Research Conference (DRC), Newark, Delaware, USA, Jun 19-22, 2016, doi: 10.1109/DRC.2016.7548508.
1. N. Noor and S. Muneer, “Concentrating Solar Power (CSP) and Its Prospect in Bangladesh”, 1st International Conference on the Developments in Renewable Energy Technology (ICDRET), Dhaka, Bangladesh, December 2009, doi: 10.1109/ICDRET.2009.5454207.
Conference Talks and Posters:
36 talks and posters in prestigious conferences, such as:
- Materials Society Meeting (MRS), USA.
- Applied Physics Society (APS) Meeting, USA.
- European Phase Change and Ovonic Symposium (E/PCOS), Grenoble, France.
Full list of talks and posters is here.
Dec 18, 2022 to date | Associate Professor, Department of Electrical & Electronic Engineering, United International University (UIU) |
Sep 14, 2019 to date | Undergraduate Program Coordinator, Department of Electrical and Electronic Engineering, United International University (UIU) |
Dec 22, 2019 to Dec 17, 2022 | Assistant Professor, Department of Electrical & Electronic Engineering, United International University (UIU) |
Apr, 2012 to Mar, 2019 and Aug, 2011 to Dec, 2011
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Graduate Assistant, Department of Electrical & Computer Engineering, University of Connecticut, USA
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Oct 08, 2008 to Dec 21, 2019 | Lecturer, Department of Electrical & Electronic Engineering, United International University (UIU) |
May 27, 2007 to Oct 7, 2008 | SI Solution Integrator, Ericsson Bangladesh Limited |
Fall 2022
Summer 2022
- EEE 2101: Electronics I
- EEE 2104: Electronics Laboratory
- EEE 2000: Simulation Laboratory
Spring 2022
- EEE 2301: Signals and Linear Systems
Fall 2021
- EEE 2301: Signals and Linear Systems
- EEE 3107: Electrical Properties of Materials
Summer 2021
- EEE 3107: Electrical Properties of Materials
- EEE 2000: Simulation Laboratory
- EEE 4903: Capstone Project III
Spring 2021
- EEE 2301: Signals and Linear Systems
- EEE 3107: Electrical Properties of Materials
Fall 2020
- EEE 2301: Signals and Linear Systems
- EEE 3107: Electrical Properties of Materials
Summer 2020
- EEE 2301: Signals and Linear Systems
- EEE 3107: Electrical Properties of Materials
Spring 2020
- EEE 211: Signals and Linear Systems (Sec A)
- EEE 211: Signals and Linear Systems (Sec B)
Fall 2019
- EEE 211: Signals and Linear Systems
- EEE 301: Electrical Properties of Materials
Membership:
- IEEE (Institute of Electrical and Electronics Engineers), since 2007
Conference Reviewer:
- ICREST 2021 (AIUB, Dhaka, Bangladesh)
- ICAICT 2020 (UIU, Dhaka, Bangladesh)
- IEEE NANO 2019 (Macau, China)
Email: sadidmuneer@eee.uiu.ac.bd
Room: 512 (D), United International University
PABX: +8809604 848848, extension 3312
LinkedIn: https://bd.linkedin.com/in/sadid-muneer-09b6364
Google Scholar: https://scholar.google.com/citations?user=-jgjytMAAAAJ&hl=en
- An effective tutorial on Python: https://youtu.be/jFCNu1-Xdsw
- ABACUS (Assembly of Basic Applications for Coordinated Understanding of Semiconductors): https://nanohub.org/wiki/EduSemiconductor2