首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >A visible light photoinitiator system to produce acrylamide based smart hydrogels: Ru(bpy)(3)(+2) as photopolymerization initiator and molecular probe of hydrogel microenvironments
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A visible light photoinitiator system to produce acrylamide based smart hydrogels: Ru(bpy)(3)(+2) as photopolymerization initiator and molecular probe of hydrogel microenvironments

机译:可见光光引发剂体系,用于生产基于丙烯酰胺的智能水凝胶:Ru(bpy)(3)(+ 2)作为光聚合引发剂和水凝胶微环境的分子探针

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摘要

A novel visible light bimolecular photoinitiator system (tris(2,2'-bipyridine)ruthenium(11)/N,N-dimethylaniline) is shown to be able to polymerize N-isopropylacrylamide (NIPAM) and 2-Acrylamido-2-Methylpropanesulfonic Acid (AMPS), in aqueous solution, to render high molecular weight polymers and crosslinked gels. The photoinitiator is especially useful to synthesize thermosensitive polymers and gels, because it could be used at temperatures below the phase transition, allowing the polymer chain to grow in its uncoiled state. The polymerization and conversion rates are affected by the structure of the monomer, decreasing in the order NIPAM > AAm > AMPS. The properties of the gels agree with literature data, suggesting that the method is able to produce conventional and smart hydrogels. The microenvironments present near linear polymers and inside crosslinked gels were investigated by measuring fluorescence lifetimes and steady state anisotropy of the metallic complex (Ru(bpy)(3)(+2), present in the solution. Clear effects of the polymer presence on the photophysical properties of the complex are observed. Therefore, the same metallic complex could be used as photoinitiator of vinyl polymerization and as molecular probe to sense the hydrogel microenvironments.
机译:一种新型的可见光双分子光引发剂体系(三(2,2'-联吡啶)钌(11)/ N,N-二甲基苯胺)能够聚合N-异丙基丙烯酰胺(NIPAM)和2-丙烯酰胺基-2-甲基丙烷磺酸(AMPS)在水溶液中制成高分子量的聚合物和交联的凝胶。光引发剂对于合成热敏聚合物和凝胶特别有用,因为它可以在低于相变的温度下使用,从而使聚合物链以未卷曲状态生长。聚合和转化率受单体结构的影响,以NIPAM> AAm> AMPS的顺序降低。凝胶的性质与文献数据一致,表明该方法能够生产常规和智能的水凝胶。通过测量溶液中存在的金属络合物(Ru(bpy)(3)(+ 2))的荧光寿命和稳态各向异性,研究了线型聚合物附近和交联凝胶内部存在的微环境。观察到该配合物的光物理性质,因此,相同的金属配合物可以用作乙烯基聚合的光引发剂,也可以用作检测水凝胶微环境的分子探针。

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