Sung Yu-Lung, Jeang Jenn, Lee Chia-Hsiung, Shih Wei-Chuan
University of Houston, Department of Electrical and Computer Engineering, 4800 Cullen Road, Houston, Texas 77004, United States.
University of Houston, Department of Electrical and Computer Engineering, 4800 Cullen Road, Houston, Texas 77004, United StatesbUniversity of Houston, Department of Biomedical Engineering, 4800 Cullen Road, Houston, Texas 77004, United StatescUniversity o.
J Biomed Opt. 2015 Apr;20(4):047005. doi: 10.1117/1.JBO.20.4.047005.
We present a highly repeatable, lithography-free and mold-free method for fabricating flexible optical lenses by in situ curing liquid polydimethylsiloxane droplets on a preheated smooth surface with an inkjet printing process. This method enables us to fabricate lenses with a focal length as short as 5.6 mm, which can be controlled by varying the droplet volume and the temperature of the preheated surface. Furthermore, the lens can be attached to a smartphone camera without any accessories and can produce high-resolution (1 μm) images for microscopy applications.
我们展示了一种高度可重复、无需光刻和模具的方法,通过喷墨打印工艺在预热的光滑表面上原位固化液态聚二甲基硅氧烷液滴来制造柔性光学透镜。该方法使我们能够制造焦距短至5.6毫米的透镜,可通过改变液滴体积和预热表面的温度来控制焦距。此外,该透镜无需任何附件即可连接到智能手机相机,并可为显微镜应用生成高分辨率(1μm)图像。