Project's information
Project's title | Study om and preparation the anti-reflective coating for glass panels of solar cell |
Project’s code | UDPTCN 03/20-22 |
Research hosting institution | Institute for Tropical Technology |
Project leader’s name | Nguyen Vu Giang |
Project duration | 01/01/2020 - 31/03/2023 |
Project’s budget | 600 million VND |
Classify | Excellent |
Goal and objectives of the project | Fabrication of anti-reflective coating on glass to apply in solar cell production.
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Main results | Technological results:
- Fabrication of anti-reflective coating on glass to apply in solar cell production.
Theoretical results:
- Light transition increased up to 97% leading to increase in energy efficiency in solar cell.
-Applied results:
- The results of project can be apply to glass panels that requiring high anti- reflective properties for solar cell production. |
Novelty and actuality and scientific meaningfulness of the results | A low refractive index coating film based on a porous structure formed when a nano-silica solution is coated on the surface, reducing light reflection caused by the surface of the glass. At the same time, using a dual-agent silane mixture increases adhesion and controls the size of silica nanoparticles. |
Products of the project | - Patents (list):
• Anti-reflective coating manufacturing process and background including anti-reflective coating
- Scientific papers in referred journals (list):
• 01 international Articles.
Characterization of closed-surface antireflective TiO2-SiO2 films for application in solar- panel glass, Materials Letters, 326 (2022), 132921.
• 01 domestic articles.
Fabrication of SiO2-TiO2 antireflection thin films for applications in solar panel, TNU Journal of Science and Technology, 226(08): 64-69.
• 01 student has been studying in this project
- Technological products (describe in details: technical characteristics, place):
• Nano silica coating solution containing silica nanoparticles with particle size < 60 nm
• 6 m² of anti-reflective coating on a solar panel with light transmittance over 95%; energy conversion efficiency increased by 1.5% compared to the origin. |
Research region | MEGASUN Co.ltd company. |
Images of project | ![]() |