APID Academic Profile Identity
sujit kumar

sujit kumar

Assistant Professor · Electrical and Electronics Engineering
Subscriber
APID
9628
ORCID
0000-0002-7408-7394
Scopus
https://www.scopus.com/authid/detail.uri?authorId=57447790200
Google Scholar
https://scholar.google.com/citations?user=NgOV0e4AAAAJ&hl=en
Location
Bengaluru, Karnataka, India
Expertise
Nanomaterials, Thin Film Technologies
Areas of interest
Nanocomposites, Synthesis methods, Thinfilm Preparation
Member since
March 2025

Biography

Dr. Sujit Kumar received his PhD in Electrical Engineering from MPUAT, CTAE, Udaipur, with the collaboration of IIT Roorkee with the DST Inspire Fellowship. He also worked as SRF at IIT Roorkee during the period of his PhD. He did his M. Tech from Sharda University, Greater Noida, as a Gold Medallist, and his B.E from Birla Institute of Technology and Science, Pilani (BITS Campus) as a gold medallist. During his B.E., he received a Governor of France Scholarship for his academic excellence. He is currently posted as an Assistant Professor in the Department of Electrical and Electronics Engineering at Dayananda Sagar College of Engineering, Bengaluru, India. He receives the prestigious Gold Medal in the NPTEL training course (Fuzzy Sets, Logic and Systems & amp; Applications) and exemplifies professional development and lifelong learning excellence. He secured all India ranks in GATE 2017 and GATE 2018 as 16 and 17, respectively. His expertise includes Nanotechnology, Material Science, Sustainable Energy, and Artificial Intelligence in Power Systems

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Publications

  1. A review on the contribution of nanotechnology for biofuel production from algal biomass: A bridge to the reduction of carbon footprint
  2. Developments, Challenges, and Projections in Solar Battery Charging in India
  3. Effect of Acidic Treatment for Conventional Processing and Recent Advances on Lignocellulosic Ricinus Communis: A Comparative Evaluation on Decomposition of Biomass for Environmental Sustainability
  4. Feature of SiO2 concentration on solar thermal functional characteristics of flat plate solar collector
  5. Investigation of electrical, corporeal, ocular, and aquaphobic properties of zirconia thin-films by varying substrate temperature for high voltage insulators
  6. Perovskite materials with improved stability and environmental friendliness for photovoltaics