首页> 外文期刊>Journal of biomedical optics >Fabrication of miniature elastomer lenses with programmable liquid mold for smartphone microscopy: curing polydimethylsiloxane with in situ curvature control
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Fabrication of miniature elastomer lenses with programmable liquid mold for smartphone microscopy: curing polydimethylsiloxane with in situ curvature control

机译:用于智能手机显微镜的带有可编程液体模具的微型弹性体透镜的制造:通过原位曲率控制固化聚二甲基硅氧烷

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摘要

Miniature lenses can transform commercial imaging systems, e.g., smartphones and webcams, into powerful, low-cost, handheld microscopes. To date, the reproducible fabrication of polymer lenses is still a challenge as they require controlled dispensing of viscous liquid. This paper reports a reproducible lens fabrication technique using liquid mold with programmable curvature and off-the-shelf materials. The lens curvature is controlled during fabrication by tuning the curvature of an interface of two immiscible liquids [polydimethylsiloxane (PDMS) and glycerol]. The curvature control is implemented using a visual feedback system, which includes a software-based guiding system to produce lenses of desired curvature. The technique allows PDMS lens fabrication of a wide range of sizes and focal lengths, within 20 min. The fabrication of two lens diameters: 1 and 5 mm with focal lengths ranging between 1.2 and 11 mm are demonstrated. The lens surface and bulk quality check performed using X-ray microtomography and atomic force microscopy reveal that the lenses are suitable for optical imaging. Furthermore, a smartphone microscope with ~1.4-μm resolution is developed using a self-assembly of a single high power fabricated lens and microaperture. The lenses have various potential applications, e.g., optofluidics, diagnostics, forensics, and surveillance.
机译:微型镜头可以将商业成像系统(例如,智能手机和网络摄像头)转变为功能强大的低成本手持式显微镜。迄今为止,聚合物透镜的可再现制造仍然是一个挑战,因为它们需要受控分配粘性液体。本文报道了一种可重复使用的透镜制造技术,该技术使用具有可编程曲率和现成材料的液体模具制造。在制造过程中,通过调整两种不混溶液体[聚二甲基硅氧烷(PDMS)和甘油]的界面曲率来控制透镜曲率。使用视觉反馈系统来实现曲率控制,该视觉反馈系统包括基于软件的引导系统以产生所需曲率的镜片。该技术允许在20分钟内制造出各种尺寸和焦距的PDMS透镜。演示了两种透镜直径的制造:焦距在1.2到11毫米之间的1和5毫米。使用X射线显微断层照相术和原子力显微镜进行的镜片表面和整体质量检查表明,该镜片适合光学成像。此外,使用单个高倍镜和微光圈的自组装技术开发了分辨率为〜1.4μm的智能手机显微镜。镜片具有各种潜在的应用,例如光流体,诊断,法医和监视。

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