Dr. Ashutosh Kumar
Indian Institute of Technology Bhilai, University of Paris-Sud, Indian Institute of Technology Patna, Lukasiewicz Research Network - Krakow Institute of Technology
About
Hello,
I am an Assistant Professor in the Department of Materials Science & Metallurgical Engineering (MSME) at Indian Institute of Technology (IIT) Bhilai, dedicated to advancing the frontiers of engineering education and research. My work focuses on developing new functional materials, fostering a collaborative and dynamic learning environment for students. Through cutting-edge research, industry partnerships, and a commitment to excellence in teaching, I strive to inspire the next generation of engineers to push the boundaries of technology and innovation.
Employment
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Indian Institute of Technology Bhilai Assistant Professor2023 - Present
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University of Paris-Sud Postdoctoral Researcher2021 - 2023
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Lukasiewicz Research Network - Krakow Institute of Technology Postdoctoral researcher2019 - 2021
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IIT Madras Postdoctoral researcher2018 - 2019
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Bihar National College Patna India Guest Faculty2012 - 2013
Education
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Indian Institute of Technology Patna PhD2013 - 2019
Projects & Funding
Projects & funding information is unavailable.
Publications (46)
- Tuning functional properties of 3-D printed ferroelectric ceramics using different architectures Save
- Tailored Thermal and Mechanical Performance of Biodegradable <scp>PLA</scp> ‐P( <scp>VDF</scp> ‐ <scp>TrFE</scp> ) Polymer Blends Save
- Magnetocaloric properties of Sb, Ge, and Ga doped AlFe2B2 Save
- Flexible PDMS/La0.7Sr0.3MnO3/MWCNT Composite Thin Films for Multifunctional Temperature and Magnetic Sensing Electronic Skin Save
- Nonlinearity and Domain Switching in a 3D‐Printed Architected Ferroelectric Save
- Dopant-induced structural modifications and thermoelectric properties in Al1.2Fe1.9M0.1B₂ intermetallic borides (M = Ag, Ni, Sb, Ga, Ge) Save
- Boosting Thermoelectric Performance in Nanocrystalline Ternary Skutterudite Thin Films through Metallic CoTe2 Integration Save
- Thermoelectric Properties of High-Entropy Wolframite Oxide: (CoCuNiFeZn)1-xGaxWO4 Save
- Effect of crystal field engineering and Fermi level optimization on thermoelectric properties of Ge1.01Te: Experimental investigation and theoretical insight Save
- Magnetic and electrical properties of high-entropy rare-earth manganites Save