School of Chemical and Biological Engineering, Seoul National University, Seoul 151-744, Korea.
Langmuir. 2010 Feb 16;26(4):2240-3. doi: 10.1021/la904768e.
We present a simple method to fabricate a polymer optical sheet with antireflection and antifogging properties. The method consists of two consecutive steps: photocross-linking of UV-curable polyurethane acrylate (PUA) resin and reactive ion etching (RIE). During photopolymerization, the cured PUA film is divided into two domains of randomly distributed macromers and oligomers due to a relatively short exposure time of 20 s at ambient conditions. Using the macromer domain as an etch-mask, dry etching was subsequently carried out to remove the oligomer domain, leaving behind a nanoturf surface with tunable roughness. UV-vis spectroscopy measurements demonstrate that transmittance of a nanoturf surface is enhanced up to 92.5% as compared to a flat PUA surface (89.5%). In addition, measurements of contact angle (CA) reveal that the etched surface shows superhydrophilicity with a CA as small as 5 degrees. To seek potential applications, I-V characteristics of a thin film organic solar cell were measured under various testing conditions. It is shown that the efficiency can be increased to 2.9% when a nanoturf film with the surface roughness of 34.73 nm is attached to indium tin oxide (ITO) glass. More importantly, the performance is maintained even in the presence of water owing to superhydrophilic nature of the film.
我们提出了一种简单的方法来制造具有抗反射和防雾性能的聚合物光学片。该方法包括两个连续的步骤:紫外光固化聚氨酯丙烯酸酯(PUA)树脂的光交联和反应离子刻蚀(RIE)。在光聚合过程中,由于在环境条件下曝光时间相对较短(20 秒),固化的 PUA 薄膜被分成两个随机分布的大分子和低聚物的域。使用大分子域作为刻蚀掩模,随后进行干法刻蚀以去除低聚物域,留下具有可调节粗糙度的纳米草皮表面。UV-vis 光谱测量表明,与平坦的 PUA 表面(89.5%)相比,纳米草皮表面的透光率提高到 92.5%。此外,接触角(CA)的测量表明,蚀刻表面具有超亲水性,接触角小至 5 度。为了寻求潜在的应用,在各种测试条件下测量了薄膜有机太阳能电池的 I-V 特性。结果表明,当附着在氧化铟锡(ITO)玻璃上的具有 34.73nm 表面粗糙度的纳米草皮薄膜时,效率可以提高到 2.9%。更重要的是,由于薄膜的超亲水性,即使存在水,性能也能保持。