SM
Sreekanth Mandati
Bekaert (Belgium), OÜ Stargate Hydrogen Solutions, Indian Institute of Technology Hyderabad, Technische Universität Dresden, Tallinn University of Technology, Indian Institute of Technology Kanpur
Employment
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Bekaert (Belgium) R & D Manager2023 - Present
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OÜ Stargate Hydrogen Solutions Electrode Development Engineer2023 - 2023
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Tallinn University of Technology Postdoctoral Researcher2021 - 2023
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International Advanced Research Centre for Powder Metallurgy and New Materials Project Scientist C2016 - 2021
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Indian Institute of Technology Bombay Tata's Post Doctoral Fellow2015 - 2016
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Purdue University Visiting Research Associate2014 - 2015
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International Advanced Research Centre for Powder Metallurgy and New Materials Senior Research Fellow2010 - 2014
Education
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Indian Institute of Technology Hyderabad Ph. D2011 - 2015
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Technische Universität Dresden M. Tech thesis2009 - 2010
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Indian Institute of Technology Kanpur M. Tech.2008 - 2010
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University of Hyderabad M. Sc.2006 - 2008
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Kakatiya University B. Sc.2003 - 2006
Projects & Funding
Projects & funding information is unavailable.
Publications (39)
- 4.9% Efficient Sb2S3 Solar Cells from Semitransparent Absorbers with Fluorene-Based Thiophene-Terminated Hole Conductors Save
- A promising scalable bar coating approach using a single crystal-derived precursor ink for high-performance large-area perovskite solar cells Save
- Sb2S3 Thin-Film Solar Cells Fabricated from an Antimony Ethyl Xanthate Based Precursor in Air Save
- Asymmetric NDI electron transporting SAM materials for application in photovoltaic devices Save
- Large area bar coated TiO2 electron transport layers for perovskite solar cells with excellent performance homogeneity Save
- Growth mechanism of pulse electrodeposited cadmium sulfide and zinc sulfide thin films with tartaric acid and glycerol as additives Save
- Sb2S3 solar cells with a cost-effective and dopant-free fluorene-based enamine as a hole transport material Save
- A non-vacuum dip coated SiO2 interface layer for fabricating CIGS solar cells on stainless steel foil substrates Save
- Solar Energy Harvesting through Photovoltaic and Photoelectrochemical Means from Appositely Prepared CuInGaSe2 Absorbers on Flexible Substrates by a Low-Cost and Industrially Benign Pulse Electrodeposition Technique Save
- Control over MoSe2 formation with vacuum-assisted selenization of one-step electrodeposited Cu-In-Ga-Se precursor layers Save