Close Menu
  • News
  • Industry
  • Solar Panels
  • Commercial
  • Residential
  • Finance
  • Technology
  • Carbon Credit
  • More
    • Policy
    • Energy Storage
    • Utility
    • Cummunity
What's Hot

Transparent superhydrophobic self-cleaning coating increases the efficiency of solar cells by 4.75% – SPE

March 11, 2026

SiteCapture launches an AI tool to automate solar operations on construction sites

March 11, 2026

Sliding shutters integrate PV for building facades

March 11, 2026
Facebook X (Twitter) Instagram
Facebook X (Twitter) Instagram
Solar Energy News
Wednesday, March 11
  • News
  • Industry
  • Solar Panels
  • Commercial
  • Residential
  • Finance
  • Technology
  • Carbon Credit
  • More
    • Policy
    • Energy Storage
    • Utility
    • Cummunity
Solar Energy News
Home - Technology - Transparent superhydrophobic self-cleaning coating increases the efficiency of solar cells by 4.75% – SPE
Technology

Transparent superhydrophobic self-cleaning coating increases the efficiency of solar cells by 4.75% – SPE

solarenergyBy solarenergyMarch 11, 2026No Comments4 Mins Read
Facebook Twitter Pinterest LinkedIn Tumblr Email
Share
Facebook Twitter LinkedIn Pinterest Email

Researchers have developed a PFAS-free double-layer sol-gel and hydrophobic silica coating that repels water, dust and dirt while maintaining high light transmission for solar panels. The transparent, self-cleaning coating improved photovoltaic efficiency from 13.90% to 14.56%, demonstrating strong durability and potential for future commercial applications.

March 11, 2026
Emiliano Bellini

An international research team has double-layer sol-gel and hydrophobic silica coating which can significantly improve the performance of solar cells by protecting the surface against dust accumulation, light reflection, bird droppings and water films.

“The double-layer coating repels water, dust and dirt without reducing the amount of light reaching the photovoltaic cells,” said the study’s corresponding author Shanhu Liu. pv magazine. “Unlike many other solutions on the market, it is made without forever chemicals, or per- and polyfluoroalkyl substances (PFAS).”

“Dust, dirt and bird droppings all affect the performance of solar panels. Maintenance can damage the panels, is expensive and sometimes a logistical challenge,” says co-author Sudhagar Pitchaimuthu. “Our clear, highly water-repellent coating works by combining a thin, self-adhesive base layer with hydrophobic silica nanoparticles that stay in place as the material cures. The microscopic roughness created by these particles traps air on the surface, causing water to pool and roll away, taking with it dirt. The result is a durable, transparent coating with strong self-cleaning properties.”

In the newspaper “Sol-gel preparation of transparent and superhydrophobic silica coatings for self-cleaning solar panels”, published in Colloids and surfaces A: physicochemical and technical aspectsthe scientists described the protective film as a double-layer transparent superhydrophobic coating that combines sol-gel-processed hydrophilic silica sol with hydrophobic silica nanoparticles.

See also  A closer look at Tesla's new residential solar panels – SPE

The sol-gel process is a wet chemical method used to produce thin films, coatings or solid materials from a liquid precursor. Liquid precursors react by hydrolysis and condensation to form a colloidal solution (sol). As the reactions proceed, the particles connect into a three-dimensional network, turning the sol into a gel. The gel is then deposited on a surface and heat treated to form a thin, solid coating, such as an anti-reflective coating used in solar panels.

For the new coating, the research group used glass slides as substrates and chemicals such as tetraethyl orthosilicate (TEOS), ethanol, ammonia solution and hydrophobic silica nanoparticles. The glass substrates were first ultrasonically cleaned with detergent and ethanol, rinsed with deionized water, and dried to remove contaminants. Then, a silica sol was prepared using TEOS, ethanol, water, and ammonia as catalysts to promote hydrolysis and condensation reactions.

After aging, the sol formed a transparent solution that was used to coat the glass via a dip coating process, followed by drying to obtain a hydrophilic silica layer. To create a superhydrophobic surface, hydrophobic silica nanoparticles were dispersed in ethanol and deposited on the coated glass through repeated dip coating cycles. The number of coating cycles and nanoparticle concentrations were varied to optimize optical transmission and surface wettability. The samples were then sintered at different temperatures to improve the stability and performance of the coating.

The quality, composition and performance of the coating were analyzed by scanning electron microscopy (SEM) and atomic force microscopy (AFM), Fourier transform infrared spectroscopy (FTIR), X-ray diffraction analysis (XRD), X-ray photoelectron spectroscopy (XPS) and UV-Vis spectroscopy.

See also  Use of Asterisk Sudoku for reconfiguration of PV system under shadow conditions - PV Magazine International

The analysis showed that the coating exhibits excellent superhydrophobicity with a water contact angle of approximately 154° and a sliding angle of 1.5°. High optical transparency was also achieved, with transmission reaching 96.2% thanks to the refractive index gradient created by the silica layers. Mechanical testing also showed strong durability against abrasion, sand impact and water droplet impact, the scientists said, noting that the coating also showed good chemical stability in neutral and acidic environments and maintained performance during outdoor exposure.

Finally, the coating, applied as a cover glass for photovoltaic cells, increased light transmission and improved the efficiency of the solar cells from 13.90% to 14.56%.

“Improving the performance of solar cells and panels could have an incredible cumulative effect,” says co-author Sanjay S. Latthe.

“A range of coatings have been introduced to the market over the last twenty years, but they all have their limitations. Our next focus is to test the coating in panels in extreme weather conditions, from Scottish winters with low temperatures and rainfall to desert conditions in Dubai. We should have our product on the market within five years, if not sooner.”

The research team included scientists from China’s Research Institute of Petroleum Exploration and Development and Henan University, as well as India’s Vivekanand College and Heriot-Watt University in the United Kingdom.

This content is copyrighted and may not be reused. If you would like to collaborate with us and reuse some of our content, please contact: editors@pv-magazine.com.

Popular content

Source link

cells coating efficiency increases Selfcleaning solar SPE superhydrophobic transparent
Share. Facebook Twitter Pinterest LinkedIn Tumblr Email
solarenergy
  • Website

Related Posts

SiteCapture launches an AI tool to automate solar operations on construction sites

March 11, 2026

NanoMalaysia unveils sodium-ion prototype that exceeds 300 Wh/kg – SPE

March 11, 2026

Aiko launches 545 W back-contact solar panel with an efficiency of 25% – SPE

March 11, 2026
Leave A Reply Cancel Reply

Don't Miss
Energy Storage

Silbat silicon batteries guarantee uninterrupted power supply for 14 days – SPE

By solarenergyFebruary 16, 20260

The silicon batteries developed by Spanish startup Silbat are the spearhead of the Research and…

Space Solar Teams with Magdrive to stimulate in-orbit solar energy systems

March 22, 2025

Smud signs PPA for 640-MWH battery under construction in Sacramento County

June 21, 2025

NOVA Infrastructure acquires community solar supplier UGE

August 17, 2024
Stay In Touch
  • Facebook
  • Twitter
  • Pinterest
  • Instagram
  • YouTube
  • Vimeo
Our Picks

Transparent superhydrophobic self-cleaning coating increases the efficiency of solar cells by 4.75% – SPE

March 11, 2026

SiteCapture launches an AI tool to automate solar operations on construction sites

March 11, 2026

Sliding shutters integrate PV for building facades

March 11, 2026

NanoMalaysia unveils sodium-ion prototype that exceeds 300 Wh/kg – SPE

March 11, 2026
Our Picks

Transparent superhydrophobic self-cleaning coating increases the efficiency of solar cells by 4.75% – SPE

March 11, 2026

SiteCapture launches an AI tool to automate solar operations on construction sites

March 11, 2026

Sliding shutters integrate PV for building facades

March 11, 2026
About
About

Stay updated with the latest in solar energy. Discover innovations, trends, policies, and market insights driving the future of sustainable power worldwide.

Subscribe to Updates

Get the latest creative news and updates about Solar industry directly in your inbox!

Facebook X (Twitter) Instagram Pinterest
  • Contact
  • Privacy Policy
  • Terms & Conditions
© 2026 Tsolarenergynews.co - All rights reserved.

Type above and press Enter to search. Press Esc to cancel.