紫外LED显微镜下制备n -异丙基丙烯酰胺(NIPAAM)微水凝胶

Ho Lee, S. Ko, Jong-Oh Park, Dongshin Kim, Sathish Akella, Ye Zhang, S. Fraden, Sukho Park
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引用次数: 1

摘要

聚n -异丙基丙烯酰胺(poly-NIPAAM)广泛应用于组织工程和微流体微结构领域。一般来说,NIPAAM是通过传统的紫外线照射或紫外线光刻聚合和图案化的。本文提出了一种利用紫外LED显微镜光聚合NIPAAM的方法。通过将商业化的UV LED、光学元件、物镜和X-Y-Z电动舞台组合在一起,我们制作了用于NIPAAM光聚合的UV LED显微镜。此外,为了研究聚合过程,安装了CCD相机和使用红色LED和光学元件的照明光源。为了聚合NIPAAM溶液,制备了一个简单的微流控通道,并将NIPAAM碱溶液注入微流控通道中。如果用NIPAAM溶液将紫外LED光束聚焦在通道上,NIPAAM可以在聚焦区域聚合。最后,我们可以利用紫外LED显微镜直接制备聚nipaam的微观结构。
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Fabrication of N-isopropylacrylamide (NIPAAM) based micro-hydrogel using UV LED microscope
Poly-N-isopropylacrylamide (poly-NIPAAM) has been widely used in tissue engineering and micro-structure in micro-fluidic applications. Generally, NIPAAM is polymerized and patterned by a conventional UV irradiation or UV lithography. This paper proposes a photo-polymerization method of NIPAAM using UV LED microscope. Through the combination of a commercialized UV LED, optical components, an objective lens and X-Y-Z motorized stage, we fabricated a UV LED microscope for the photo-polymerization of NIPAAM. In addition, for the investigation of the polymerization procedure, CCD camera and an illumination light source using red LED and optical components were installed. For the polymerization of NIPAAM solution, a simple micro-fluidic channel was fabricated and the NIPAAM base solution was injected into the micro-fluidic channel. If the UV LED beam was focused on the channel with NIPAAM solution, the NIPAAM can be polymerized in the focused region. Finally, we can directly fabricate micro-structures of poly-NIPAAM by using the proposed UV LED microscope.
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