About
"Dr. Swarup Kundu is a passionate and accomplished physics teacher, dedicated researcher, and avid enthusiast in the field of lithium-ion batteries. With an insatiable curiosity for understanding the fundamental principles of physics and their real-world applications, he has made significant contributions to both academia and the renewable energy industry.
With a doctorate in materials physics from the prestigious Indian Institute of Science (IISc), Dr. Swarup's journey into the world of science began early in his life. His groundbreaking research has shed light on improving battery efficiency, lifespan, and safety.
Swarup is equally dedicated to the art of teaching. His love for sharing knowledge and inspiring young minds led him to pursue a career in education. He imparts his wisdom with an infectious enthusiasm, making even the most intricate concepts accessible to his students."
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Publications (18)
- B2O3 as an effective sintering aid in enhancing the lithium-ion conductivity of LiTa2PO8 solid electrolyte Save
- Could Combeite (Na2Ca2Si3O9) Serve as a Potential Biomaterial Platform that could Support the Growth of the Osteoblasts? Save
- Vibrational study of lithium borotellurite glasses Save
- Synergistic effect of trivalent (Gd3+, Sm3+) and high-valent (Ti4+) co-doping on antiferromagnetic YFeO3 Save
- Direct preparation of standard functional interfaces in oxide heterostructures for 2DEG analysis through beam-induced platinum contacts Save
- Network former mixing effects in ion-conducting lithium borotellurite glasses: Structure/property correlations in the system (Li2O) [2(TeO2) (B2O3)1−]1− Save
- Structure and ionic conductivity of nitrated lithium disilicate (LiSiON) glasses Save
- Ionic conductivity and mixed-ion effect in mixed alkali metaphosphate glasses Save
- Preparation, structural characterization, and electrical conductivity of highly ion-conducting glasses and glass ceramics in the system Li<inf>1+x</inf>Al<inf>x</inf>Sn<inf>y</inf>Ge<inf>2-(x+y)</inf>(PO<inf>4</inf>)<inf>3</inf> Save
- Improved electrical characteristics of Pr-doped BiFeO<inf>3</inf> ceramics prepared by sol-gel route Save