Department of Nanofusion Technology, Pusan National University, Busan 609-735, Republic of Korea.
Nanoscale. 2014;6(3):1453-61. doi: 10.1039/c3nr04629j.
A facile and scalable technique to fabricate optically transparent, mechanically flexible and self-cleanable superhydrophobic films for practical solar cell applications is proposed. The superhydrophobic films were fabricated simply by transferring a transparent porous alumina layer, which was prepared using an anodic aluminium oxidation (AAO) technique, onto a polyethylene terephthalate (PET) film with a UV-curable polymer adhesive layer, followed by the subsequent formation of alumina nano pyramids (NPs) through the time-controlled chemical etching of the transferred porous alumina membrane (PAM). It was found experimentally that the proposed functional films can ensure the superhydrophobicity in the Cassie-Baxter wetting mode with superior water-repellent properties through a series of experimental observations including static contact angle (SCA), contact angle hysteresis (CAH), sliding behaviour on the tilted film, and dynamic behaviour of the liquid droplet impacting on the film. In addition to the superior surface wetting properties, an optical transmittance of ∼79% at a light wavelength of 550 nm was achieved. Furthermore, there was no significant degradation in both the surface wetting properties and morphology even after 1500-cycles of repetitive bending tests, which indicates that the proposed superhydrophobic film is mechanically robust. Finally, the practicability of the proposed self-cleanable film was proven quantitatively by observing the changes in the power conversion efficiency (PCE) of a photovoltaic device covering the film before and after the cleaning process.
提出了一种简便且可扩展的技术,用于制造适用于实际太阳能电池应用的光学透明、机械柔性和自清洁的超疏水膜。通过将使用阳极氧化铝氧化(AAO)技术制备的透明多孔氧化铝层简单地转移到具有紫外光可固化聚合物粘合剂层的聚对苯二甲酸乙二醇酯(PET)膜上,然后通过对转移的多孔氧化铝膜(PAM)进行时间控制的化学蚀刻来形成氧化铝纳米金字塔(NPs),从而制造出超疏水膜。通过一系列实验观察,包括静态接触角(SCA)、接触角滞后(CAH)、倾斜膜上的滑动行为以及液滴对膜的动态行为,实验发现所提出的功能膜可以确保在 Cassie-Baxter 润湿模式下具有超疏水性和优越的疏水性。除了优异的表面润湿性外,在 550nm 光波长下还实现了约 79%的光透射率。此外,即使经过 1500 次重复弯曲测试,表面润湿性和形貌也没有明显下降,这表明所提出的超疏水膜具有机械强度。最后,通过观察覆盖在膜前后的光伏器件的功率转换效率(PCE)的变化,定量证明了所提出的自清洁膜的实用性。