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首页> 外文期刊>Journal of Polymers and the Environment >Environmental Functional Photo-Cross-Linked Hydrogel Bilayer Thin Films from Vanillin
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Environmental Functional Photo-Cross-Linked Hydrogel Bilayer Thin Films from Vanillin

机译:香兰素的环境功能性光交联水凝胶双层薄膜

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摘要

A new functional monomer based on vanillin was synthetized and used in the preparation of three different molar concentrations of temperature and pH responsive photo-cross-linker polymers via free radical polymerization with N -isopropylacryamide and malimide photo-cross-linker. Polymers were investigated by_(1)HNMR, FTIR, UV, gel permeation chromatography (GPC) and differential scanning calorimetery (DSC). The non-responsive copolymers have been synthetized from N,N -dimemthylacrylamide with malimide. Lower critical solution temperatures ( T ~( c )) were determined by UV–Vis spectroscopy. Hydrogel bilayer was formed by spin coating of polymer solution of poly( N -isopropylacryamide-Co-malimide-Co-DEAMVA) layer A over gold with adhesion promoter, then cross-linked by UV-irradiation. The swelling properties were determined by surface plasmon resonance with optical waveguides (SPR/OW). The T ~( c )of hydrogel was also determined as function of volume degree of swelling or refractive index with temperature at different pH. The next layer was formed by spin coating of polymer solution poly( N,N -dimemthylacrylamid-Co-malimide) layer B over layer A, then cross-linked by UV-irradiation. The swelling properties and T ~( c )were determined by SPR/OW in different media. Our target is the formation of biosensor functional gel vessel for biological molecules using aldehyde group. The bilayer functional hydrogels will have an additional feature, in which the target molecule stays safely inside this gel vessel responsively temperature and pH. Graphical Abstract New acrylate monomer from vanillin has been synthetized with aldehyde and tertiary amine group to achieve both functionality and pH responsive. The copolymerization with NIPAAm and DMIAAm has done forming pH and temperature photo-cross-linked polymers. Hydrogel layer was built first with mono then bilayer and both has characterized by SPR/OW. The effect of non-responsive layer on the responsive one was demonstrated. In future we will use this technique as biosensor hydrogel for vessel to attach and detach biomolecules, further drug-delivery.
机译:合成了一种基于香草醛的新型功能性单体,并通过与N-异丙基丙烯酰胺和丙二酰亚胺光交联剂的自由基聚合反应,用于制备三种不同摩尔浓度的温度和pH响应的光交联剂聚合物。通过(1)1 HNMR,FTIR,UV,凝胶渗透色谱法(GPC)和差示扫描量热法(DSC)研究聚合物。非反应性共聚物已经由N,N-二甲基丙烯酰胺与马来酰亚胺合成。较低的临界溶液温度(T〜(c))由UV-Vis光谱法确定。水凝胶双层是通过在附着力促进剂上在金上旋涂聚(N-异丙基丙烯酰胺-共-马来酰亚胺-Co-DEAMVA)层A的聚合物溶液,然后通过紫外线照射交联而形成的。溶胀特性是通过光波导的表面等离子体共振(SPR / OW)确定的。还确定了水凝胶的T〜(c)与不同pH下随温度的溶胀或折射率的体积度的函数。通过在层A上旋涂聚合物溶液聚(N,N-二甲基丙烯酰胺-共-马来酰亚胺)层B形成下一层,然后通过UV辐射交联。溶胀性质和T〜(c)由SPR / OW在不同介质中确定。我们的目标是使用醛基为生物分子形成生物传感器功能性凝胶容器。双层功能水凝胶将具有其他功能,其中目标分子响应温度和pH值而安全地停留在该凝胶容器内。图形摘要来自香兰素的新型丙烯酸酯单体已与醛和叔胺基合成,以实现功能性和pH响应性。与NIPAAm和DMIAAm的共聚反应完成了形成pH和温度的光交联聚合物。水凝胶层首先用单层然后再用双层来构建,并且两者均具有SPR / OW的特征。证明了非响应层对响应层的影响。将来,我们将把这种技术用作生物传感器水凝胶,以使血管附着和分离生物分子,从而进一步进行药物递送。

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