Harish C. Barshilia, Ph. D.
Also known as: H. C. Barshilia
National Aerospace Laboratories, Indian Institute of Technology Delhi
About
Dr. Harish Barshilia works as a Chief Scientist at Surface Engineering Division, CSIR-National Aerospace Laboratories, Bangalore, India. Concurrently, he is Prof. of Physical Sciences at AcSIR, New Delhi. His broad areas of research interests include: Nanoscience and Nanotechnology, Solar Energy, Surface Engineering, Optical Coatings, Aircraft Coatings, 0-D, 1-D & 2-D Materials, PVD Coatings, etc. He has published 293 SCI journal papers (h-index: 67), 10 review articles, 33 conference proceeding papers, 7 book chapters (2 by CRC Press). Dr. Barshilia has also authored 20 patents (11 foreign granted, 5 trademarks, ToTs to 3 fims), and has delivered 181 invited lectures in India and abroad. Dr. Barshilia was also an Associate Editor of the journal "Nanosci. & Nanotech. Lett.". Google Scholar : goo.gl/hGxLG
Employment
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National Aerospace Laboratories Chief Scientist2012 - Present
Education
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Indian Institute of Technology Delhi Ph. D.1993 - 1996
Projects & Funding
Projects & funding information is unavailable.
Publications (282)
- Advancing solar panel performance with AlOx-SiOx hybrid coatings: Tackling reflection and fogging challenges Save
- In situ high-temperature emissivity measurements of heat-treated, silicon coated stainless steel for solar thermal applications Save
- Reduced-Graphene-Oxide-Based Thin Films: An Alternative Coating for Harsh Space Environments Save
- Interface Surface Effect of SnO2–GO Thin-Film Heterostructure on H2 Gas Sensor Performance Save
- A Comprehensive Review on Corrosion Detection Methods for Aircraft: Moving from Offline Methodologies to Real-Time Monitoring Combined with Digital Twin Technology Save
- Mesoporous aluminium titanate: Superhydrophilic and photocatalytic antireflective coating for solar glass covers with superior mechanical properties Save
- Realizing an Optical Micro‐Cavity in a CuCo2O4‐W‐CuCo2O4 Thin Film Stack for Spectrally Selective Solar Absorbers Save
- WAlSiN-based solar-selective coating stability-study under heating and cooling cycles in vacuum up to 800 °C using in situ Rutherford backscattering spectrometry and spectroscopic ellipsometry Save
- Enhanced Sensing Performance of Sb-Doped Nanometer-Thin SnO2 Films toward CO and NH3 Gases Save
- Development of Cellulose-Reinforced Polyurethane Coatings: A Novel Eco-Friendly Approach for Wind Turbine Blade Protection Save