Krishna K Yadav
University of Salamanca, Shamoon College of Engineering Department of Chemical Engineering, Institute of Nano Science and Technology
About
I am experimental physicist and materials scientist currently serving as a Post-Doctoral Fellow at the Department of Fundamental Physics, University of Salamanca, Spain. My current research is dedicated to nanoscale solid-state device physics, with a specific focus on coupled sliding ferroelectricity and electrostatically driven structural phase transitions in 2D van der Waals heterostructures for next-generation non-volatile memory architectures as well as solar cell. I received my Ph.D. in Nanotechnology from the Institute of Nano Science and Technology (INST), Mohali, India, in 2021, where my thesis focused on the synthesis and application of nanostructured metal borides. Following his Ph.D., I served as an Institute Post-Doctoral Fellow at INST Mohali, investigating 2D materials for advanced field emission technologies. From 2022 to 2024, I was a Post-Doctoral Fellow at Shamoon College of Engineering, Israel, specializing in Dip-Pen Nanolithography and the design of meta-chemical surfaces for electrochemical sensing. I have extensive hands-on expertise in cleanroom nanofabrication, electron-beam lithography, dry-transfer crystal co-lamination, and advanced multi-mode atomic force microscopy. My scientific track record includes 51 peer-reviewed publications in high-impact journals, 13 book chapters, and 3 patents (2 granted).
Employment
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University of Salamanca Postdoctoral Researcher2024 - Present
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Shamoon College of Engineering Department of Chemical Engineering Post Doctoral2022 - 2024
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Institute of Nano Science and Technology Post Doctoral2021 - 2022
Education
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Institute of Nano Science and Technology PhD2016 - 2021
Projects & Funding
Projects & funding information is unavailable.
Publications (56)
- Shape-induced manganese iron-based nanostructures loaded onto iron sheet as efficient electrocatalyst for O₂ evolution Save
- Enhanced photogenerated carrier assisted ethanol oxidation via surface modification with perovskite to develop p-n type NiTiO3-NiO heterostructure Save
- Efficient Electrocatalytic Ethanol Oxidation Using Lanthanum Nickel Oxide Nanoparticles Anchored on Graphite Surface Save
- Dip-Pen Nanolithography-Based Fabrication of Meta-Chemical Surface for Heavy Metal Detection: Role of Poly-Methyl Methacrylate in Sensor Sensitivity Save
- Electrochemical Sensor Based on Black Phosphorus for Antimony Detection Using Dip-Pen Nanolithography: The Role of Dwell Time Save
- Excellent Electrochemical Oxygen Production from Ultrafine Nanoparticles of Manganese Ferrite Spinel Derived from Spent Primary Battery Save
- Harnessing the Potential of Dip-Pen Nanolithography to Pattern Meta-Chemical Surfaces with Glutathione Inks: An Electrochemical Sensor for Pb(II) and Hg(II) Save
- Realizing ultralow overpotential during electrochemical hydrogen generation through photoexcitation of chromium disulphide Save
- Tailoring crystalline Mn5O8 nanostructures: Kinetic control and stabilization for enhanced electrocatalytic O2 evolution Save
- Scalable and Cost-Effective Synthesis of 2D Materials Save