DG
Dhriti Sundar Ghosh
Also known as: D S Ghosh
Indian Institute of Technology Dharwad, Indian Institute of Technology Bhilai, ICFO-The Institute of Photonic Sciences, Indian Institute of Technology Guwahati, National Physical Laboratory CSIR
Employment
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Indian Institute of Technology Dharwad Associate Professor2024 - Present
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Indian Institute of Technology Dharwad Assistant Professor2023 - 2024
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Indian Institute of Technology Bhilai Assistant Professor2017 - 2023
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National Physical Laboratory CSIR Ramanujan Fellow2017 - 2017
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IAPP- Dresden Integrated Center for Applied Physics and Photonic Materials Research Fellow2015 - 2017
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ICFO-The Institute of Photonic Sciences Postdoctoral Fellow2012 - 2015
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ICFO- The Institute of Photonic Sciences PhD Student2008 - 2012
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North-Eastern Hill University Junior Research Fellow2006 - 2008
Education
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ICFO-The Institute of Photonic Sciences PhD2008 - 2012
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Indian Institute of Technology Guwahati Master of Science2004 - 2006
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Dibrugarh University Bachelor of Science2000 - 2003
Projects & Funding
Projects & funding information is unavailable.
Publications (47)
- Reassessing the role of ITO thickness to optimise the device performance in perovskite solar cells Save
- 1D‐Photonic Crystals Enabling Selective Chromaticity for Colored Perovskite Solar Cells Save
- From Organic to Inorganic: Manganese Sulfide as a Novel Hole Transport Layer for Perovskite Solar Cells Save
- Halide perovskites for emerging applications beyond photovoltaics: Recent progress and future prospects Save
- Oxidized copper seed layer for ultrathin and semi-transparent silver films Save
- Fabrication of Highly Efficient and Ambient Stable Planar MAPbI3 Perovskite Solar Cells via Defect Passivation through Crosslinking Strategy Save
- Performance optimisation of n-i-p type CH 3 NH 3 PbI 3 based perovskite solar cells using SCAPS 1-D device simulation Save
- Oxide–Metal–Oxide Based Transparent Electrodes and Their Potential Application in Semitransparent Perovskite Solar Cells‐Optical Modeling Studies Save
- Fabrication of a Highly Functional TiO2/AZO Bilayer Electron Transport Layer for Planar Perovskite Solar Cells Save
- Optimization of the Anti-Solvent Method for the Fabrication of Cu Electrode-Based High-Efficiency Perovskite Solar Cell Save