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Photovoltaic Solar Panels Self-cleaning Photocatalysis Nano-coating

HTZ0024
Hydrophobicity, Anti-static, Self-cleaning, Improve light transmittance>93.5%
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product features
HTZ0024 is a nano-coating based on advanced photocatalytic technology, specifically designed for photovoltaic modules.  Its core functions include efficient self-cleaning performance, long-lasting anti-pollution capability, significantly reduced dust adhesion, and improved power generation efficiency of photovoltaic modules.  By decomposing organic pollutants through photocatalytic reactions, it simultaneously forms a superhydrophilic surface, allowing water to spread evenly and carry dirt away from the module surface, providing comprehensive protection for photovoltaic modules.
 
Using nano-hollow silica technology, antistatic technology, and photocatalytic control technology, this coating can form a micro-rough structure of 50-100nm on the surface of the component.  The ultra-thin coating after curing has a hydrophilic angle of less than 10°, high surface energy, and low electrostatic adsorption characteristics, which can effectively reduce the adhesion of dust and particles, further reducing the cleaning frequency and maintenance costs, while also having high transmittance and excellent weather resistance.
 
 Fast drying at room temperature: 1-5 minutes to dry, 24 hours to fully cure, hardness of more than 3H (Mitsubishi pencil, Japan)
 Wear and weather resistance: compared with the 1000 times wear life of the traditional super hydrophobic coating, the wear life of this product is up to 25,000 times,
 Organic inorganic hybrid network structure, excellent weather resistance, protection effect for more than 5 years

 Non-dustiness: the surface resistance value is between 107-109 Ω, greatly reducing the attachment of dust and clay

Super hydrophilic: water contact angle less than 10°, self-cleaning surface dust or clay in rain or condensation, reduce the cleaning frequency of photovoltaic modules

Photocatalysis: Under light conditions, it decomposes organic pollutants and inhibits bacterial growth, improving the efficiency of photovoltaic power generation by decomposing bird droppings; high transmittance coating, which enhances the light transmittance of the module surface, increasing the overall power generation by more than 5%; reduces the formation of hot spots; uniform heat dissipation, protecting the performance of photovoltaic modules.
 
 Applicable material Photovoltaic module glass
 curing method Self-drying at room temperature, completely cured after 24 hours of storage
 Applied range
 Photovoltaic power station self-cleaning dust, decomposition of bird droppings treatment
 Photovoltaic power stations in areas with severe sandstorms, and photovoltaic equipment in industrial pollution zones