[Objective]Addressing the issues of photovoltaic glass surfaces being susceptible to environmental abrasion and fogging due to water vapor condensation caused by temperature fluctuations.[Methods] Hydrophilic silane monomer(F6-TMS) was synthesized via silicon hydrogenation addition reaction,and hydrophilic nanoparticles(F6@SiO
2)were produced by hydrolysisand condensation with ethyl orthosilicate. The hydrophilic acrylic resin emulsion(WPA)was obtained by seed emulsion polymerization using allyloxypolyethyleneglycol and acrylate monomers as raw materials. The nanoparticle hybrid superhydrophilic coating F6@SiO
2-WPA was constructed by composite roasting of the two,and the nanoparticles and the resin were characterized by FT-IR and SEM. The wettability,abrasion resistance,transmittance,and anti-fogging properties of the superhydrophilic coating were tested.[Results]The results showed that when F6@SiO
2 was added at 30%,the water contact angle(WCA)of the constructed superhydrophilic coating was 3. 3°,and after 600 cycles of abrasion,the WCA remained below 10° and the coating was in a superhydrophilic state overall. The light transmittance of the coating was 93. 1%,which was 3. 8% higher than that of blank glass,showing a significant light-transmitting effect. After being placed for 30 days,the anti-fog grade of the coating remained at level 0. The superhydrophilic coating showed excellent anti-fog performance and durability.[Conclusion] F6@SiO
2-WPA provides new solutions in the field of anti-reflection and anti-fogsuperhydrophilic coatings for photovoltaic glass.