Feedback

Dr. Sk Masum Nawaz

Assistant Professor
Department of Electrical and Electronics Engineering

Electronic Devices, RRAM for Neuromorphic Computing, Nanogenerator and Self-powered Sensors
Birla Institute of Technology & Science, Pilani
Hyderabad Campus
Jawahar Nagar, Kapra Mandal
Dist.-Medchal-500 078
Telangana, India

Journal Publications

  1. A. S. Manna, M. Saha, S. Mondal, Sk Masum Nawaz, A. MalliK, D. K. Maiti. "Amino Acid-Modified Wrinkled Graphene Oxide Nanofiber Embedded in PMMA for Long-Term Archival Memory Applications" ACS Applied Electronic Materials, 2024, XXX, XXX, (Impact Factor: 4.7)
  2. Sk Masum Nawaz, M. Chatterjee, S. Chakrabarti, N. Sepay, A. Mallik. “Realization of a highly-performing triboelectric nanogenerator utilizing molecular self-assembly” Nano Energy, 2023, 117, 108924 (Impact Factor: 19.069)
  3. M. Saha, S. Dey, Sk Masum Nawaz, A. Mallik. “Environment-friendly resistive memory based on natural casein: Role of electrode and bio-material concentration” Organic Electronics, 2023, 121, 106869 (Impact Factor: 3.868)
  4. Sk Masum Nawaz, M. Saha, N. Sepay, A. Mallik. “Energy-from-waste: A triboelectric nanogenerator fabricated from waste polystyrene for energy harvesting and self-powered sensor” Nano Energy, 2022, 104, 107902 (Impact Factor: 19.069)
    (Highlighted in nature india News: https://www.nature.com/articles/d44151-022-00134-1)
  5. M. Saha, Sk Masum Nawaz, B. K. Keshari, A. Mallik. “Natural-Casein-Based Biomemristor with Pinched Current-Voltage Characteristics” ACS Applied Bio Materials, 2022, 5, 833-840 (Impact Factor: 4.7)
  6. M. Sil, Sk Masum Nawaz and A. Mallik. “On the performance of hafnium-oxide-based negative capacitance FinFETs, with and without a spacer ” Semiconductor Science and Technology, 2022, 37, 045006 (Impact Factor: 2.352)
  7. T. Ghosh, S. Mondal, R. Maiti, Sk Masum Nawaz, N. N. Ghosh, E. Dinda et al. “Complementary amide- based donor–acceptor with unique nano-scale aggregation, fluorescence, and band gap-lowering properties: a WORM memory device” Nanotechnology, 2021, 32, 025208 (Impact Factor: 3.953)
  8. Sk Masum Nawaz and A. Mallik. “Role of quantum capacitance on the random dopant fluctuation induced threshold voltage variability in junctionless InGaAs FinFETs” Solid State Electronics, 2020, 171, 107862 (Impact Factor: 1.901)
  9. M. Sil, S. Guin, Sk Masum Nawaz and A. Mallik. “Performance of Ge p‑channel junctionless FinFETs for logic applications” Applied Physics A, 2019, 125, 782 (Impact Factor: 2.983)
  10. D. K. Maiti, S. Debnath, Sk Masum Nawaz, B. Dey, E. Dinda et al. “Composition-dependent nanoelectronics of amidophenazines: non-volatile RRAM and WORM memory devices” Scientific Reports, 2017, 7, 13308 (Impact Factor: 4.996)
  11. Sk Masum Nawaz and A. Mallik. “Effects of Device Scaling on the Performance of Junctionless FinFETs Due to Gate-Metal Work Function Variability and Random Dopant Fluctuations” IEEE Electron Device Letters, 2016, 37, 958-961 (Impact Factor: 4.816)
  12. Sk Masum Nawaz, S. Dutta, and A. Mallik. “Comparison of Gate-Metal Work Function Variability Between Ge and Si p-Channel FinFETs” IEEE Transactions on Electron Devices, 2015, 62, 3951-3955 (Impact Factor: 3.221)
  13. Sk Masum Nawaz, S. Dutta, and A. Mallik. “A comparison of random discrete dopant induced variability between Ge and Si junctionless p-FinFETs” Applied Physics Letters, 2015, 107, 033506 (Impact Factor: 3.971)
  14. Sk Masum Nawaz, S. Dutta, A. Chattopadhyay, and A. Mallik. “Comparison of Random Dopant and Gate-Metal Workfunction Variability Between Junctionless and Conventional FinFETs” IEEE Electron Device Letters, 2014, 35, 663-665 (Impact Factor: 4.816)