M. Sai Bhargava Reddy
Also known as: Mandapati Sai Bhargava Reddy, MSB Reddy
Purdue University West Lafayette, Indian Institute of Technology Kharagpur - IIT Kharagpur, Jawaharlal Nehru Technological University, Hyderabad
About
I am a materials scientist and engineer specializing in electrochemistry, nanomaterials, and advanced energy storage. I earned my Ph.D. in Metallurgical and Materials Engineering from IIT Kharagpur and am currently a Postdoctoral Researcher at Purdue University.
My research focuses on lithium-ion and sodium-ion batteries, extreme-temperature electrochemistry, electrolyte and interphase engineering, MXenes, and gas sensing devices. I am particularly interested in translating fundamental materials discoveries into scalable technologies for next-generation energy storage and harsh-environment applications.
Employment
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Purdue University West Lafayette Postdoctoral Researcher2026 - Present
Education
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Indian Institute of Technology Kharagpur - IIT Kharagpur PhD2021 - 2026
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Jawaharlal Nehru Technological University, Hyderabad M. Tech2017 - 2019
Projects & Funding
Projects & funding information is unavailable.
Publications (34)
- Hierarchical MXene‐Derived NTP/C Nanohybrids for Cryogenic Sodium‐Ion Batteries Save
- Frontiers in Energy Harvesting and Storage Under Extreme Low-Temperatures Save
- Suppressing Shuttle Effect through Solvent Coordination and Nitrate Synergy Enables Stable Lithium–Sulfur Batteries Save
- Spiderweb-like nickel nanostructures integrated with Ti3C2T @PANI nanocomposite for high-performance non-invasive glucose detection Save
- In-situ crosslinked safer quasi-solid electrolytes compatible with diverse Li-ion battery anodes and cathodes Save
- Tetramethylammonium-Intercalated M2CTx (M = Ti, V, Nb, Mo) MXene Nanosheet-Based Gas Sensors Save
- Mechanistic Elucidation of Etchant-Induced Surface Chemistry Variations on MXenes Gas Sensing Performance Save
- Low-temperature sodium-ion batteries: challenges, engineering strategies, safety considerations, and future directions Save
- Structural, mechanical, and tribological properties of Ti68Zr26Mo6 high-temperature shape memory thin films: Effect of SiO2 buffer layer Save
- Ti3C2Tx/Polyaniline Nanocomposite in a Noninvasive Disposable Enzyme Free Glucose Sensor Save