Rashmi Walvekar
University Of Strathclyde, University of Strathclyde, International Islamic University Malaysia, Universiti Putra Malaysia, Taylor's University, SDM college of Engineering and technology
About
My research encompasses a diverse spectrum, spanning heat transfer enhancements, nanomaterial synthesis, wear-reducing lubricants, green solvent synthesis, and sustainable energy solutions. I have spearheaded numerous research projects, particularly focusing on nanofluid stability, innovative lubricant formulations, and pioneering Deep Eutectic Solvents for tire devulcanization. Leveraging optimization tools like Design Expert, my contributions have culminated in over 140 indexed publications, patents, book chapters, and accolades on national and international platforms.
I was honoured with the prestigious President Award for Research and Innovation in 2018, and the Vice Chancellor's Most Cited Academic Award in 2016. Through unwavering dedication to education and groundbreaking research, I am driven to inspire and shape the next generation of innovators and thinkers.
Employment
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University of Strathclyde Research Associate2025 - 2026
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Taylor's University Associate Professor2023 - 2024
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Xiamen University Malaysia Associate Professor2020 - 2023
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Taylor's University Associate Professor2012 - 2020
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University Of Strathclyde
Education
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International Islamic University Malaysia PhD2007 - 2012
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Universiti Putra Malaysia Masters2005 - 2007
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SDM college of Engineering and technology BE2000 - 2004
Projects & Funding
Projects & funding information is unavailable.
Publications (240)
- Corrigendum to “Co3O4 derived ZnO Save
- Safety, toxicology, environmental, and ethical considerations of MXene-polymer composites Save
- Amine-functionalized MoS2–hBN hybrid nanoparticles for enhanced tribological and thermal performance of gasoline engine oil Save
- Double-transition-metal MXene–CoS2 hybrid electrocatalysts Save
- Microwave-pyrolysed rice husk-derived activated carbon as a austainable anode material for lithium-ion half-cell batteries Save
- Tailoring microstructure and transport properties of bismuth sulfide via microwave-assisted synthesis for enhanced thermoelectric performance Save
- High-entropy 2D MXenes Save
- Rapid synthesis of activated carbon/bismuth sulfide hybrid anode for next-generation lithium-ion batteries Save
- Tailoring MXene/nickel cobalt phosphate composite for enhanced electrochromic and supercapacitor applications Save
- Rapid and energy-efficient microwave-assisted synthesis of activated carbon/NiCoP/ composites as high-performance anode materials for lithium-ion batteries Save