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Prof. Anjaiah Sheelam

Assistant Professor Gr-II

Department of Chemistry

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Information

Room No: 503 +91-870-246 ans@nitw.ac.in https://anjansheelam.wixsite.com/website Bio Sketch

    Key Notes

    • Journal(s): 10
    • Book Chapter(s): 1
    • PhD: Current - 2
    • Event(s) Organized:  FDP - 1

    11

    PUBLICATIONS

    2

    DOCTORAL STUDENTS

    1

    PROJECT

    2

    PATENTS

    Research Areas

    Engineering the Microenvironment of Electrified Interfaces
    Green-H2 Production from Seawater
    Magneto-electrochemistry for Energy Conversion and Storage
    Topological Electrocatalysis
    EDUCATION QUALIFICATION
    Degree Institute Year
    Doctor of Philosophy IIT Madras 2017
    COURSES HANDLED
    Course L-T-P Credit Degree Level
    Engineering Chemistry(CY1161) 3-0-2 4 UG
    Environmental Chemistry(CYI311) 3-0-0 3 UG
    RESEARCH IDs
    ORCID
    ORC ID
    Scopus
    SCOPUS ID
    Google Scholar
    Google Scholar ID
    PUBLICATIONS
    Journal(s)
    Co-Engineering of Bulk Composition and Surface Structure of Metal Sulfides for Oxygen Evolution Reaction, By A. Sheelam, J. Matsuura, and Y. Zhang, American Chemical Society, ACS Electrochemistry, vol.1, pp.1414-1422, 2025
    Ultra-stable and poison tolerant oxygen evolution activity enabled by surface In2O3-x(OH)y of Co3In2S2 large single-crystals, By A. Sheelam, A. Whitten, C. G. Moore, M. Engelhard, J.-S. McEwen, and J. G. Bell, Royal Society of Chemistry, Journal of Materials Chemistry A, vol.12, pp.32259-32272, 2024
    Uniform electrodeposition of Pd nanoparticles on MoS2-x nanosheets using magnetic fields for improved mass utilization in hydrogen evolution, By A. Sheelam and J. G. Bell, Elsevier, International Journal of Hydrogen Energy, vol.56, pp.348-357, 2024
    Improved Capacitance of Electropolymerized Aniline Using Magnetic Fields, By W. McLeod, A. Sheelam, A. Kroiss, and J. G. Bell, MDPI, Sustainability, vol.15, pp.15419, 2023
    Retaining the Reversible Capacity by Lorentz Forces for Enhanced Cyclability of Aqueous Zinc-Bromide Batteries Using Internal Magnets, By A. Sheelam, D. L. Glasco, and J. G. Bell, Elsevier, Chemical Engineering Journal, vol.461, pp.141900, 2023
    Improved Oxygen Redox Activity by High- valent Fe and Co3+ sites in the Perovskite LaNi1-x Fe0.5x Co0.5xO3, By A. Sheelam, S. Balu, A. Muneeb, K. S. Bayikadi, D. Namasivayam, E. E. Siddharthan, A. I. Inamdar, R. Thapa, M-H. Chiang, S-J. I. Huang and S. Raman, American Chemical Society, ACS Applied Energy Materials, vol.5, pp.343-354, 2022
    Free- Standing Polyvinyl Alcohol-Reduced Graphene Oxide-Cuprous oxide Films for Selective Electrochemical Reduction of Carbon Dioxide to Methanol, By A. Sheelam, A. Muneeb, B. Talukdar, R. Ravindranath, S‑J. Huang, C‑H. Kuo, and S. Raman, Springer Nature, Journal of Applied Electrochemistry, vol.50, pp.979-991, 2020
    Nickel-based Hybrid Material for Electrochemical Oxygen Redox Reactions in Alkaline Medium, By P. Mani, A. Sheelam, P. E. Karthick, S. Raman, K. Ramanujam, and S. Mandal, American Chemical Society, ACS Applied Energy Materials, vol.3, pp.6408-6415, 2020
    Green, Seed-Mediated Synthesis of Au Nanowires and Their Efficient Electrocatalytic Activity in Oxygen Reduction Reaction, By S. Balasubramanian, A. Sheelam, K. Ramanujam, and R. Dhamodharan, American Chemical Society, ACS Applied Materials & Interfaces, vol.9, pp.28876-86, 2017
    Nitrogen Functionalized Few Layer Graphene Derived from Metal- Organic Compound: A Catalyst for Oxygen Reduction Reaction, By A. Sheelam, and K. Ramanujam, Elsevier, Electrochimica Acta, vol.216, pp.457-66, 2016
    Book Chapter(s)
    Chapter 27. Comparison between supercapacitors and other energy-storing electrochemical devices By A. Sheelam, W. Mcleod, R. Badam, M. King, and J. G. Bell in Smart Supercapacitors: Fundamentals, Structures and Applications, Elsevier, Edited Book, 2023
    Patent(s)
    A Weyl Semimetal for Oxygen Evolution Reaction. (Appl. # 63/608, 760)
    Metal-based Batteries with Internal Magnets (Appl. # 63/346, 763)
    PROJECT / CONSULTANCY
    Topological Weyl Semimetal based Single Crystals as Electrodes for Green Hydrogen Production
    Role: Principal Investigator
    Type: Research
    Sponsor: National Institute of Technology Warangal
    Project Cost (INR): 500000
    Date of Commencement: 10-12-2025  
    Duration: 12 Months
    Status: Ongoing
    RESEARCH FELLOWS / PhD STUDENTS
    Current PhD Students
    Arunrex Nayakam A
    Area of Research: Corrosion Tolerant Electrocatalysts for Green Hydrogen Production
    Ravindar Daravath
    Area of Research: Molecular Electrocatalysts for Nitrate to Ammonia Conversion
    CONFERENCE / WORKSHOP / SYMPOSIUM / SHORT TERM COURSE / FACULTY DEVELOPMENT PROGRAMME / GIAN
    5-Day Online FDP on “Bio-inspired Materials and Catalysis for Industrial and Biomedical Applications”
    08-Dec-2025 → 12-Dec-2025
    Event Type: Faculty Development Programme
    Role: Coordinator
    Funding Agency: Self‑sponsored
    ADDITIONAL RESPONSIBILITIES
    •  Professor In-Charge, Social Media (Department of Chemistry) (Continuing from August, 2025)
     Last updated on January 22, 2026