Suresh Perumal
Also known as: P. Suresh
Indian Institute of Technology, Hyderabad, Indian Institute of Technology Jodhpur, Indian Institute of Science, Presidency College, University of Madras
About
My research interest mainly focuses on the synthesis, materials processing, and physical properties of intermetallics, silicides, oxides, and chalcogenides-based materials for thermoelectric power generations, especially to harvest untapped waste-heat into usable electricity and thereby powering a small-scale electronic device and boost-up the gasoline heat engines. In this view, since 2007, I am extensively working on (i) the Physics of functional materials, (ii) tailoring the electronic and phonon band structures, (iii) engineering the microstructures by metallurgical routes, (iv) Examining the mechanical properties, (v) Development of Thermoelectric Power Generators and (vi) Design, Assembly and Fabrication of Transport Property Measurement Systems, to enhance the thermoelectric (heat-to-electricity) conversion efficiency of selected materials.
Further, I am also exploring the rare-earth-free NiMn-based half-Heuslers for low magnetic field and room temperature magnetic refrigeration.
Employment
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Indian Institute of Technology, Hyderabad Assistant Professor2023 - Present
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Indian Institute of Technology Jodhpur Assistant Professor2023 - 2023
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SRM Institute of Science and Technology (Deemed to be University) Assistant Professor2018 - 2022
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Jawaharlal Nehru Centre for Advanced Scientific Research Research Associate2016 - 2018
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SKKU, South Korea Postdoctoral Researcher2016 - 2016
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Jawaharlal Nehru Centre for Advanced Scientific Research Research Associate2014 - 2016
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Laboratory CRISMAT, Caen, France Postdoctoral Fellow2013 - 2014
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Indian Institute of Science Junior and Senior Research Associate2012 - 2013
Education
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Indian Institute of Science Ph. D.,2007 - 2012
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Presidency College, University of Madras M.Sc.,2005 - 2007
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Govt. Arts College, Salem-7, Periyar University B. Sc.,2002 - 2005
Projects & Funding
Projects & funding information is unavailable.
Publications (76)
- Carrier Engineering via Al and Ga Doping Enhances Thermoelectric Properties in Si-Rich Higher Manganese Silicide Save
- Off-stoichiometry-driven electronic structure modulation leads to high thermoelectric performance in n-type InSb: an experimental study with theoretical insights Save
- Exploring the Potential of Strontium Substituted High-Entropy Oxides for Supercapacitors and Photocatalytic Applications Save
- Dual doping strategy for enhancing the thermoelectric performance of Yb0.4Co4Sb12 Save
- Realizing high thermoelectric performance in MXene-incorporated Yb0.4Co3.96Ti0.04Sb12via carrier and phonon engineering Save
- Realizing high electrochemical performance in layered polycrystalline Ca3Co4O9 oxide Save
- Impact of atomic size misfit on lattice distortion in AlFeCoNiX (X = Cr/Mn/Zr) multicomponent alloys Save
- Glassy Thermal Transport Triggers Ultra‐High Thermoelectric Performance in GeTe Save
- High Electrochemical Performance and Photocatalytic Activity in Multicomponent Nanostructured (CuZnNiCoMg)O Save
- Enhancing mechanical, and tribological properties of aluminum metal matrix composite reinforced with high entropy alloy using friction stir processing Save