Subhajit Pal
Queen Mary University of London, Indian Institute of Science Bangalore, Indian Institute of Technology Madras, Indian Institute of Technology Guwahati
About
I hold a Ph.D. degree from the Indian Institute of Technology Madras on “Multifunctional Characteristics of BaTiO3-based Ferroelectric Oxides”. This research was conducted at the Department of Physics, IIT Madras. My research work can be described by the following keywords: piezoelectric and ferroelectric (FE) materials, photovoltaic properties, ceramics, thin films, photoferroelectrics, atomic force microscopy (AFM), and electrocaloric effect. For the next phase of my career, I have research experience of more than 3 years at two different institutes, where I significantly improved my research background by synthesising and characterising various types of ferroelectric and non-ferroelectric thin films.
Employment
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Queen Mary University of London Postdoctoral research assistant2021 - Present
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Indian Institute of Science Bangalore Postdoctoral research assistant2021 - 2021
Education
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Indian Institute of Technology Madras PhD2016 - 2021
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Indian Institute of Technology Guwahati Masters of Science2013 - 2015
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Ramakrishna Mission Vivekananda Centenary College, Rahara Bachelor of Science2010 - 2013
Projects & Funding
Projects & funding information is unavailable.
Publications (30)
- Correlation between domain structure dynamics and electromechanical behavior in Sn-doped BaTiO3 Save
- Band alignments of complex heterojunctions from first principles: the case of the α-Fe2O3/BaTiO3 interface Save
- Subsecond optically controlled domain switching in freestanding ferroelectric BaTiO3 membrane Save
- Oxygen Vacancy-Mediated Microflower-like Bi5O7I for Reactive Oxygen Species Generation through Piezo-Photocoupling Effect Save
- A piezo-self-Fenton system based on dual co-catalyst modified Bi4Ti3O12 with accelerated Fe3+/Fe2+ cycle and efficient in-situ production of H2O2 Save
- Biomass-derived functional additive for highly efficient and stable lead halide perovskite solar cells with built-in lead immobilisation Save
- Determination of Imprint Effects in Ferroelectrics from the Quantified Phase and Amplitude Response Save
- Optical Control of In-Plane Domain Configuration and Domain Wall Motion in Ferroelectric and Ferroelastic Materials Save
- Precursor‐Engineered Volatile Inks Enable Reliable Blade‐Coating of Cesium–Formamidinium Perovskites Toward Fully Printed Solar Modules Save
- Giant electrostriction-like response from defective non-ferroelectric epitaxial BaTiO3 integrated on Si (100) Save