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Fabrication of multi-scale micro-lens arrays on hydrophobic surfaces using a drop-on-demand droplet generator

机译:使用按需滴落液滴生成器在疏水表面上制备多尺度微透镜阵列

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A simple method was demonstrated for the fabrication of multi-scale polymer microlenses (g-lenses) and microlens arrays (MLAs) using a drop-on-demand (DOD) droplet generator. A ultraviolet (UV) curable polymer used as the ink was DOD printed on the hydrophobic surfaces with different wetting conditions and cured by a UV lamp. The high quality mu-lenses and MLAs with good geometrical uniformity were fabricated. The shapes of the A-lenses and MLAs were controlled by the different surface wetting conditions, and these shape changes affected the optical properties of the mu-lenses and MLAs, such as the numerical aperture (NA), focal distance (f) and the f-number (f(#)). The surface roughness of the A-lens was measured by a white light interferometer (VSI mode) and atomic force microscope (AFM) and proved satisfactory. The influences of the surface wetting conditions on imaging and light gathering characteristics of the MLAs were evaluated by an optical microscope. (C) 2014 Elsevier Ltd. All rights reserved.
机译:演示了使用按需滴落(DOD)液滴生成器制造多尺度聚合物微透镜(g透镜)和微透镜阵列(MLA)的简单方法。在不同的润湿条件下,将用作油墨的紫外线(UV)可固化聚合物DOD印刷在疏水表面上,并通过紫外线灯固化。制作了具有良好几何均匀性的高质量mu-lens和MLA。 A透镜和MLA的形状由不同的表面润湿条件控制,这些形状的变化影响了M透镜和MLA的光学特性,例如数值孔径(NA),焦距(f)和f数(f(#))。用白光干涉仪(VSI模式)和原子力显微镜(AFM)测量了A透镜的表面粗糙度,证明是令人满意的。通过光学显微镜评估了表面润湿条件对MLA成像和聚光特性的影响。 (C)2014 Elsevier Ltd.保留所有权利。

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