Umesh Waghmare, PhD

Affiliations: 
2009- Theoretical Sciences Unit Jawaharlal Nehru Centre for Advanced Scientific Research 
Area:
Computational Materials Science
Website:
http://www.jncasr.ac.in/waghmare/
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"Umesh Waghmare"
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Parents

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Karin M. Rabe grad student 1996 Yale (Astronomy Tree)
Efthimios Kaxiras post-doc 1998-2000 Harvard
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Publications

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Acharyya P, Ghosh T, Pal K, et al. (2022) Glassy thermal conductivity in CsBiICl single crystal. Nature Communications. 13: 5053
Dutta M, Prasad MVD, Pandey J, et al. (2022) Local Symmetry Breaking Suppresses Thermal Conductivity in Crystalline Solids. Angewandte Chemie (International Ed. in English). 61: e202200071
Chandra S, Arora R, Waghmare UV, et al. (2021) Modulation of the electronic structure and thermoelectric properties of orthorhombic and cubic SnSe by AgBiSe alloying. Chemical Science. 12: 13074-13082
Dutta M, Pal K, Etter M, et al. (2021) Emphanisis in Cubic (SnSe)(AgSbSe): Dynamical Off-Centering of Anion Leads to Low Thermal Conductivity and High Thermoelectric Performance. Journal of the American Chemical Society
Sarkar D, Roychowdhury S, Arora R, et al. (2021) Metavalent Bonding in GeSe Leads to High Thermoelectric Performance. Angewandte Chemie (International Ed. in English)
Roychowdhury S, Ghosh T, Arora R, et al. (2021) Enhanced atomic ordering leads to high thermoelectric performance in AgSbTe. Science (New York, N.Y.). 371: 722-727
Acharyya P, Ghosh T, Pal K, et al. (2020) Intrinsically Ultralow Thermal Conductivity in Ruddlesden-Popper 2D Perovskite Cs2PbI2Cl2: Localized Anharmonic Vibrations and Dynamic Octahedral Distortions. Journal of the American Chemical Society
Lee HJ, Lee M, Lee K, et al. (2020) Scale-free ferroelectricity induced by flat phonon bands in HfO. Science (New York, N.Y.)
Sarkar D, Ghosh T, Roychowdhury S, et al. (2020) Ferroelectric Instability Induced Ultralow Thermal Conductivity and High Thermoelectric Performance in Rhombohedral p-type GeSe Crystal. Journal of the American Chemical Society
Biswas K, Samanta M, Pal K, et al. (2020) Intrinsically Low Thermal Conductivity and High Carrier Mobility in Dual Topological Quantum Material, n-type BiTe. Angewandte Chemie (International Ed. in English)
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