Engineering Research Center of Optical Instrument and System, the Ministry of Education, Shanghai Key Laboratory of Modern Optical System, University of Shanghai for Science and Technology , Shanghai 200093, China.
The Institute of Photonics and Quantum Sciences, School of Engineering and Physical Sciences, Heriot-Watt University , Edinburgh EH14 4AS, U.K.
ACS Appl Mater Interfaces. 2017 May 17;9(19):16604-16609. doi: 10.1021/acsami.7b00766. Epub 2017 May 3.
A rapid method is developed for fabricating low-cost and high-numerical-aperture photosensitive-gel microlens arrays (MLAs) with well-controlled curvatures. An UV-curable photosensitive-gel film beneath the microholes of a silicon mold can be flexibly deformed by thermally manipulating the surface tension of the photosensitive gel and the pressure difference across the air-photosensitive-gel interface. The concave interface is then solidified through UV curing, forming a MLA with a concave curvature. MLAs with a focal length ranging from 51.4 to 71.9 μm and a numerical aperture (NA) of 0.49 were fabricated. The photocured MLA has high mechanical and thermal strength and is suitable as a master mold for the further production of convex MLAs. The fabricated microlenses have uniform shapes and smooth surfaces. In a demonstration of imaging and focusing performance, clear and uniform images and focused light spots were observed using concave and convex MLAs.
一种快速制备低成本、高数值孔径光敏凝胶微透镜阵列 (MLAs) 的方法,具有良好的曲率控制。硅模具微孔下的紫外光可固化光敏凝胶可以通过热操纵光敏凝胶的表面张力和空气-光敏凝胶界面的压差来灵活变形。然后通过紫外光固化使凹面界面固化,形成具有凹面曲率的 MLA。制备了焦距为 51.4 至 71.9 μm,数值孔径(NA)为 0.49 的 MLAs。光固化的 MLA 具有较高的机械和热强度,适合作为进一步制作凸面 MLAs 的母模。所制备的微透镜具有均匀的形状和光滑的表面。在成像和聚焦性能的演示中,使用凹面和凸面 MLA 观察到了清晰均匀的图像和聚焦光斑。