PW
Pravin Walke
University of Mumbai, University of Pune, University of Napoli-Federico-II, CNRS-Laboratoire de Cristallographie et de Sciences de Matériaux
Employment
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University of Mumbai Assistant Professor2013 - Present
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University of Pune Research Associate2012 - 2013
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CNRS-Laboratoire de Cristallographie et de Sciences de Matériaux Marie Curie Experienced Researcher (post-doctoral fellow)2011 - 2012
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CNR Research scholar2008 - 2011
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South Dakota State University Research Assistant2007 - 2007
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National Chemical Laboratory CSIR Project Assistant2006 - 2007
Education
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University of Napoli-Federico-II PhD2007 - 2010
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University of Pune M.Sc.2003 - 2005
Projects & Funding
Projects & funding information is unavailable.
Publications (83)
- Morphology Tuning of Ni3O6/Co3O4 Donut Nanostructure as High‐Performance Positive Electrode for Aqueous Hybrid Supercapacitor Save
- Cauliflower‐Like Nickel‐Based Bilinker Metal–Organic Frameworks for High‐Performance Hybrid Supercapacitors Save
- Tuning the electrochemical properties of tungsten oxide nanoplates via Sn doping and mixed-phase formation for superior quasi-solid-state asymmetric supercapacitors Save
- Ultrafast Zn2+ diffusion and exceptional stability in self-assembled 2D VS2/Ti3C2TX heterostructures for advanced zinc-ion batteries Save
- Hierarchical nickel oxide nanoparticles grown on cobalt oxide micro-bricks as battery-type electrode for high-performance hybrid supercapacitors Save
- Anomalous Variation in Ferromagnetic TC with Ionic Radius <rA> in High-Entropy Manganite: A Demonstration on the Crucial Role of ∠Mn─O─Mn Save
- Bifunctionalized CoFe-LDH Nanosheets via Iron Oxide and Nickel Hydroxide Nanostructures as an Efficient Electrode for Aqueous Hybrid Supercapacitors Save
- Iron oxide@CoFe-LDH nanocomposites for highly stable aqueous hybrid supercapacitors Save
- Probing the influence of morphological transformation on the electrochemical properties of hydrated tungsten oxide (WO3−x·H2O) for a high-rate aqueous asymmetric supercapacitor Save
- Exchanging interlayer anions in NiFe-LDHs nanosphere enables superior battery-type storage for high-rate aqueous hybrid supercapacitors Save