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Prof. Sk Masum Nawaz

Assistant Professor,
Department of Electrical and Electronics Engineering

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

Journal Publications

  1. S. Dey, M. Saha, Sk Masum Nawaz, A. Mandal, A. Mallik. "A Lignin‐Based Stable and Highly Performing Resistive Switching Device for Multilevel Data Storage and Neuromorphic Applications" Advanced Materials Technologies, 2026, 11, e01216 (Impact Factor: 6.2)
  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)