BJ
Bhavana Joshi
Also known as: Bhavana N. Joshi
Korea University, Sungkyunkwan University, CSIR National Chemical Laboratory
Employment
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Korea University Research Professor2024 - Present
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Sungkyunkwan University Research Professor2023 - 2024
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Korea University Research Professor2022 - 2023
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CSIR National Chemical Laboratory DST Woman Scientist2020 - 2022
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NES Science college, Nanded Contributory Lecturer2019 - 2020
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NES Science college, Nanded Contributory Lecturer2018 - 2019
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Korea University Research Professor2015 - 2018
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Jimma University Institute of Technology Assistant Professor2014 - 2015
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Korea University Research Professor2011 - 2013
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (79)
- Carbon-nanofiber supercapacitor electrodes decorated with manganese oxide nanocuboids via ammonia-assisted impregnation Save
- ZIF-8-derived hierarchical ZnO nanoplates anchored to low-density carbon fabric: Highly flexible supercapacitors with wide potential windows Save
- Freestanding electrodes based on nitrogen-doped carbon nanofibers and zeolitic imidazolate framework-derived ZnO for flexible supercapacitors Save
- Supersonically Sprayed Carbon-Coated Bimetallic Zn2SnO4 with Reduced Graphene Oxide for Rapid-Charging, Binder-Free, and Long-Term-Stable Lithium-Ion-Battery Anodes Save
- Exploring the potential of MIL-derived nanocomposites to enhance performance of lithium-ion batteries Save
- Leidenfrost limit enhancement via supersonically sprayed iron carboxylate framework for convection cooling Save
- Eco-friendly cellulose wearable heaters using Korean traditional Han paper coated with graphene nanosheets via binder-free supersonic spraying Save
- Water-repelling, vapor-resisting, self-cleaning, oil–water-separating, water-purifying, antibacterial Hanji cellulose papers coated with Teflon and ZnO particles via supersonic spraying Save
- Scalable, flexible BaTiO3/PVDF piezocomposites prepared via supersonic spraying for use in energy harvesting and integrated energy storage devices Save
- Review of indium-free, transparent and flexible metallic fibers for wearable electronics Save