APID Academic Profile Identity
Ketan P. Gattu

Dr. Ketan P. Gattu

Assistant Professor · Department of Nanotechnology
Author
APID
6740
ORCID
0000-0001-7399-3494
Scopus
55620370500
Google Scholar
pO9ukV4AAAAJ
Location
Chhatrapati Sambhajinagar, Maharashtra, India
Expertise
Nanoscience and Nanotechnology
Areas of interest
Gas sensors, Photovoltaics, Energy, Green Nanotechnology
Member since
May 2024

Biography

Dr. Ketan P. Gattu is an Assistant Professor at the Department of Nanotechnology, Dr. Babasaheb Ambedkar Marathwada University, where he has been a faculty member since May 2017. He earned his Ph.D. in Nanotechnology from the same university, focusing on the bio-synthesis of tin oxide nanoparticles and their application in gas sensors.
Dr. Gattu’s research interests encompass the design and development of nanomaterials using innovative techniques such as microreactor technology and bio-green synthesis methods. He has significant experience in synthesizing and characterizing a variety of nanomaterials, including metals, metal oxides, and carbon-based materials, aimed at improving their properties and performance for applications in energy storage, catalysis, and biomedicine.
Throughout his career, Dr. Gattu has contributed extensively to the scientific community with numerous publications in high-impact journals. He has also been an active journal referee for several prestigious journals, including IOP Nanotechnology and ACS Omega. His work has been recognized with patents, and he has delivered invited talks on nanotechnology applications.
Dr. Gattu is committed to advancing the field of nanotechnology through both his research and teaching, having taught various courses in nanotechnology at the Master's level and supervised numerous graduate students. His dedication to science and education continues to drive his contributions to the field of nanoscience and nanomaterials.

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Publications

  1. Experimental evaluation of gamma radiation attenuation properties of Ni0. 2MgxZn0. 8-xFe2O4
  2. Formulation of microwave assisted Z-scheme MoS2@TiO2: explored physicochemical properties and photodegradation of MO dye
  3. Investigating the influence of vinylene carbonate concentrations on battery stability: role of electrode/electrolyte interfaces
  4. Nanoengineered reduced graphene oxide-Fe doped α-MnO2: A multifunctional smart material for energy storage and environmental remediation
  5. Physical, structural and nuclear radiation shielding behavior of Ni–Cu–Zn Fe2O4 ferrite nanoparticles
  6. ZnO-PANI nanocomposite: Enhanced electrochemical performance towards energy storage