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Synthesis of Poly(N-isopropylacrylamide) Janus Microhydrogels for Anisotropic Thermo-responsiveness and Organophilic/Hydrophilic Loading Capability

机译:聚(N-异丙基丙烯酰胺)Janus微凝胶的合成具有各向异性的热响应性和亲有机/亲水负载能力

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摘要

Janus microparticles are compartmentalized particles with differing molecular structures and/or functionality on each of their two sides. Because of this unique property, Janus microparticles have been recognized as a new class of materials, thereby attracting a great deal of attention from various research fields. The versatility of these microparticles has been exemplified through their uses as building blocks for self-assembly, electrically responsive actuators, emulsifiers for painting and cosmetics, and carriers for drug delivery. This study introduces a detailed protocol that explicitly describes a synthetic method for designing novel Janus microhydrogels composed of a single base material, poly(N-isopropylacrylamide) (PNIPAAm). Janus microdroplets are firstly generated via a hydrodynamic focusing microfluidic device (HFMD) based on the separation of a supersaturated aqueous NIPAAm monomer solution and subsequently polymerized through exposure to UV irradiation. The resulting Janus microhydrogels were found to be entirely composed of the same base material, featured an easily identifiable compartmentalized morphology, and exhibited anisotropic thermo-responsiveness and organophilic/hydrophilic loading capability. We believe that the proposed method introduces a novel hydrogel platform with the potential for advanced synthesis of multi-functional Janus microhydrogels.
机译:Janus微粒是在其两侧的每一侧上具有不同的分子结构和/或功能性的间隔开的颗粒。由于这种独特的性能,Janus微粒已被公认为是一类新型材料,因此吸引了各个研究领域的广泛关注。这些微粒的多功能性已通过其用作自组装的构件,电响应致动器,用于绘画和化​​妆品的乳化剂以及用于药物输送的载体得到例证。这项研究引入了详细的协议,该协议明确描述了一种设计由单一基础材料聚(N-异丙基丙烯酰胺)(PNIPAAm)组成的新型Janus微水凝胶的合成方法。 Janus微滴首先基于过饱和NIPAAm单体水溶液的分离,通过流体动力学聚焦微流体装置(HFMD)生成,然后通过暴露于UV辐射而聚合。发现所得的Janus微水凝胶完全由相同的基础材料组成,具有易于识别的分隔形态,并表现出各向异性的热响应性和亲有机性/亲水性负载能力。我们认为,提出的方法引入了一种新型的水凝胶平台,具有先进的多功能Janus微水凝胶合成的潜力。

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