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Simultaneous size and color tuning of polymer microparticles in a single-step microfluidic synthesis: particles for fluorescence labeling

机译:一步微流合成中聚合物微粒的尺寸和颜色调整同时进行:用于荧光标记的微粒

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摘要

In the droplet-based microfluidic synthesis, the formation, precise control and tuning of the droplet sizes are important parameters, and therefore construction of an appropriate microreactor for the generation of precise-sized droplets is crucial. Droplets, enclosed with functional additives, come into contact with UV light and initiate the polymerization reaction. In general, co-flow and flow focusing arrangements are widely used for generating the homogeneous particles. However, the size of the particles is always in the micrometer to millimeter range only. Considering this issue, here in this paper size controlled poly-tripropylene glycol diacrylate (poly-TPGDA) microparticles with a broad size range down to the micron are produced in a silicone holeplate based distinct micro cross-flow set-up. Different surfactants and their concentrations along with flow rate ratios of both immiscible phases play a crucial role in tuning the particle size in a wide range between 40 mm and 500 mm. Besides the size of the microparticles, a controlled composition of differently fluorescence active dyes tunes the fluorescent properties of microparticles by modifying the microfluidic arrangement. Mixing of the monochromatic fluorescent particles and multi-coloured particles of different sizes creates a huge range of patterns for multi-fluorescence labeling. Here we present the broad range of size as well as color tuned polymer microparticles in a single-step continuous microfluidic procedure, and characterize them by SEM, light microscopy and fluorescence microscopy.
机译:在基于液滴的微流体合成中,液滴尺寸的形成,精确控制和调整是重要的参数,因此构建合适的微反应器以产生精确尺寸的液滴至关重要。包含功能性添加剂的液滴与紫外线接触并引发聚合反应。通常,并流和流聚焦装置广泛用于产生均质颗粒。然而,颗粒的尺寸总是仅在微米至毫米范围内。考虑到这个问题,在本文中,在基于硅树脂孔板的独特的微错流装置中生产了尺寸控制范围广至微米的聚三丙二醇二丙烯酸酯(poly-TPGDA)微粒。不同的表面活性剂及其浓度以及两种不混溶相的流速比在调节40 mm至500 mm宽范围内的粒径方面起着至关重要的作用。除了微粒的尺寸,不同荧光活性染料的受控组成还可以通过改变微流体排列来调节微粒的荧光特性。单色荧光颗粒和不同大小的多色颗粒的混合产生了多种用于多荧光标记的图案。在这里,我们以单步连续微流控方法介绍了各种尺寸以及颜色调谐的聚合物微粒,并通过SEM,光学显微镜和荧光显微镜对其进行了表征。

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