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Fabrication of Diverse Microcapsule Arrays of High Density and Good Stability

机译:高密度高稳定性的多种微胶囊阵列的制备

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Microcapsule arrays attract a lot of interest due to their potential applications in sensing technology. A strategy for fabricating diverse microcapsule arrays through covalent linking is reported here. The self-assembly of microcapsules was directed by using a poly(allylamine hydrochloride) (PAH)-patterned template, which was created via microcontact printing. The microcapsules with PAH as the outermost layer were treated with glutaraldehyde and then covalently immobilized on the PAH regions, resulting in ordered microcapsule arrays. The arrays had a high density of capsules and the aggregate number in a pattern could be well controlled by adjusting the area of the PAH pattern. A single microcapsule array could be obtained if the diameter of the PAH region was smaller than that of the microcapsules. These covalently assembled arrays could survive through successive incubation in solutions of high ionic strength and extreme pHs. Such good stability ensures further treatments, such as chemical reactions and loading of functional substances.
机译:微胶囊阵列由于其在传感技术中的潜在应用而吸引了很多兴趣。本文报道了通过共价键连接制造各种微囊阵列的策略。微胶囊的自组装通过使用聚(烯丙胺盐酸盐)(PAH)图案化的模板来指导,该模板是通过微接触印刷创建的。用戊二醛处理具有PAH作为最外层的微囊,然后将其共价固定在PAH区域上,从而形成有序的微囊阵列。该阵列具有高的胶囊密度,并且通过调节PAH图案的面积可以很好地控制图案中的总数。如果PAH区域的直径小于微囊的直径,则可以获得单个微囊阵列。这些共价组装的阵列可以通过在高离子强度和极端pH的溶液中连续孵育而存活下来。如此好的稳定性确保了进一步的处理,例如化学反应和功能性物质的装载。

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