Enhanced self-cleaning performance on hydrophobic glass surfaces using hydrophilic dagger features coated with silica nanoparticles

被引:1
|
作者
Abeywardena, Madupa [1 ,2 ]
Zimmermann, Thomas [3 ,4 ]
Xu, Qianfeng [1 ,5 ]
Loebmann, Peer [4 ]
Mandel, Karl [3 ,4 ]
Stauch, Claudia [4 ]
Lyons, Alan [1 ,2 ,5 ]
机构
[1] CUNY, Coll Staten Isl, Dept Chem, Staten Isl, NY 10314 USA
[2] CUNY, Grad Ctr, PhD Program Chem, New York, NY 10016 USA
[3] Friedrich Alexander Univ Erlangen Nurnberg, Dept Chem & Pharm, Inorgan Chem, Egerlandstr 1, D-91058 Erlangen, Germany
[4] Fraunhofer Inst Silicate Res ISC, Neunerplatz 2, D-97082 Wurzburg, Germany
[5] ARL Designs LLC, Summit, NJ 07901 USA
关键词
Photovoltaic glass; Anti-soiling; Self-cleaning; Water harvesting; Hydrophilic; Hydrophobic; Nanoparticles; CONDENSATION; COATINGS; IMPACT; DUST;
D O I
10.1016/j.solmat.2024.113366
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Accumulated dust on solar cover glass reduces transmittance, leading to decreased energy efficiency of photovoltaic (PV) modules. Hydrophobic coatings on solar cover glass have been shown to provide anti-soiling properties when exposed to a condensing environment (e.g. dew). The addition of hydrophilic features along the top edge of the hydrophobic coated glass enhances condensation rates and can be used to achieve selfcleaning of the surfaces. However, to date, relatively long times have been required to clean the surfaces. In this study, we developed a new design for hydrophilic features that reduce the time required to clean the surface in laboratory tests as measured by laser scanning microscopy, optical photographs and UV-vis spectroscopy. The dagger-shaped features improve self-cleaning performance by a combination of three factors: a silica nanoparticle (NP) hydrophilic coating which enhances condensation rate due to a low water contact angle (WCA) and nano-scale porosity; the stepwise transition from the low WCA silica NP region to the high WCA silanized hydrophobic region via a bare glass transition zone; and the pointed shape of the hydrophobic dagger features which further minimizes the barrier for transport of droplets from the condensing region to the high-mobility, hydrophobic, region of the surface. The hydrophilic silica nanoparticle-coated dagger features not only improve the self-cleaning efficiency of the hydrophobic surfaces but also increase the overall amount of water harvested. Such coating designs provide an effective approach to reducing maintenance costs as well as increasing the overall energy output of PV panels.
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页数:11
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