MS
MURALI MOHAN SEEPANA
National Institute of Technology Warangal, Indian Institute of Technology Delhi, JNTU College of Engineering
About
Associate Professor, Department of Chemical Engineering, National Institute of Technology, Warangal, India
Research Interests: Electrochemical Energy Storage and Generation; Wastewater Treatment; Membrane Separations
Employment
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National Institute of Technology Warangal Associate Professor2013 - Present
Education
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Indian Institute of Technology Delhi Ph.D.2009 - 2013
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Indian Institute of Technology Delhi M.Tech2007 - 2009
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JNTU College of Engineering B.Tech2002 - 2006
Projects & Funding
Projects & funding information is unavailable.
Publications (44)
- Biomass‐Derived Activated Carbon Microtubes From Butea monosperma Flowers and Hydrothermally Grown Triple‐Morphological Co3O4 Electrodes in Flexible Supercapattery Device for Wearable Energy Storage Applications Save
- Synergistic Tricomponent Pt–Co3O4–WO3 on a Carbon Electrocatalyst for Efficient Bifunctional Oxygen Electrocatalysis for Sustainable Regenerative PEM Fuel Cells Save
- Yucca-plant-like MgCo2O4 nanoneedle cluster arrays hydrothermally-grown on three-dimensional nickel foam for highly efficient supercapacitor performances Save
- Proton Conducting Silica Immobilized PWA—PVDF Composite Membrane for AQS/BQDS Redox Flow Battery Save
- Experimental investigation to enhance the efficiency of solar photovoltaic (PV) panels by integrating phase change materials and nano-enhanced biochar: A techno-econo-environmental assessment Save
- Facile treatment of NiO under nitrogen for improved supercapacitor performances Save
- Silicon dioxide incorporated cellulose acetate‐mixed matrix membranes for Safranin-O removal from aqueous solutions Save
- A Strategic Study on the Effect of Coagulation on Hydrodynamic Cavitation Treatment of Real-Time Textile Effluents Save
- ZIF-8 decorated cellulose acetate mixed matrix membrane: An efficient approach for textile effluent treatment Save
- Synthesis and Electrocatalytic Performance of TiO2 Supported on Carbon Nanoparticles Towards Positive Half-Cell Reaction of Hydrogen-1,4p-benzoquinone Flow-Battery Save