Lee Demei, Tang Ya-Ling, Liu Shih-Jung
Department of Mechanical Engineering, Chang Gung University, Taoyuan 33302, Taiwan.
Department of Orthopedic Surgery, Bone and Joint Research Center, Chang Gung Memorial Hospital-Linkou, Taoyuan 33305, Taiwan.
Polymers (Basel). 2021 Jan 27;13(3):405. doi: 10.3390/polym13030405.
We report the fabrication of nanofeatured polymeric films using nanosphere lithography and ultraviolet (UV) soft-mold roller embossing and show an illuminative example of their application to solar cells. To prepare the nanofeatured template, polystyrene nanocolloids of two distinct sizes (900 and 300 nm) were overlaid on silicon substrates using a spin coater. A lab-made soft-mold roller embossing device equipped with a UV light source was adopted. A casting method was employed to replicate the nanofeatured template onto polydimethylsiloxane, which was used as the soft mold. During the embossing procedure, the roller was driven by a step motor and compressed the UV-curable resin against the glass substrate to form the nanofeatured layer, which was subsequently cured by UV radiation. Polymer films with nanoscaled features were thus obtained. The influence of distinct processing variables on the reproducibility of the nanofeatured films was explored. The empirical outcomes demonstrate that UV soft-mold roller embossing offers a simple yet potent way of producing nanofeatured films.
我们报告了使用纳米球光刻和紫外(UV)软模辊压印技术制备具有纳米特征的聚合物薄膜,并展示了其在太阳能电池应用中的一个有启发性的例子。为了制备纳米特征模板,使用旋涂器将两种不同尺寸(900和300 nm)的聚苯乙烯纳米胶体覆盖在硅基板上。采用了实验室自制的配备紫外光源的软模辊压印装置。采用浇铸法将纳米特征模板复制到用作软模的聚二甲基硅氧烷上。在压印过程中,辊由步进电机驱动,并将紫外光固化树脂压在玻璃基板上以形成纳米特征层,随后通过紫外辐射进行固化。由此获得了具有纳米尺度特征的聚合物薄膜。探讨了不同加工变量对纳米特征薄膜再现性的影响。实验结果表明,紫外软模辊压印提供了一种简单而有效的制备纳米特征薄膜的方法。