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Stimuli-Responsive Hydrogels Synthesis using Free Radical and RAFT Polymerization

机译:使用自由基和筏聚合的刺激响应水凝胶合成

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Temperature and pH stimuli-responsive hydrogel particles were synthesized using inverse-suspension polymerization in batch stirred reactor. Different water soluble co-monomers were present in the initial mixture (e.g. N-isopropylacrylamide and acrylic acid) as well as crosslinkers with different functionalities. Different operating conditions such as polymerization temperature, monomers dilution, neutralization and the initial ratios of co-monomers and monomers/crosslinker were also tried. Hydrogel particles were produced considering classical free-radical polymerization (FRP) and also RAFT polymerization. Commercially available RAFT agents 4-cyano-4-phenylcarbonothioylthio-pentanoic acid (CPA), 2-(dodecylthiocarbonothioylthio)-2-methylpropionic acid (DDMAT) and cyanomethyl dodecyl trithiocarbonate (CDT) were alternatively used. Sampling at different polymerization times allowed the study of the kinetics of polymerization through the analysis by SEC of the soluble phase. A tetra-detector array with simultaneous detection of refractive index, light scattering, intrinsic viscosity and ultra-violet signals was used in these studies. Usefulness of in-line FTIR-ATR monitoring to study the building process of such networks was also assessed. The performance of hydrogel beads was studied through drug delivery tests triggered by changes in the environmental temperature and pH. This research aims to contribute for the elucidation of the connection between the synthesis conditions, molecular architecture and properties/performance of such advanced materials.
机译:在批料搅拌反应器中使用逆悬浮聚合合成温度和pH刺激响应水凝胶颗粒。不同的水溶性共聚单体存在于初始混合物(例如N-异丙基丙烯酰胺和丙烯酸)中,以及具有不同功能的交联剂。还尝试了不同的操作条件,例如聚合温度,单体稀释,中和和共聚单体和单体/交联剂的初始比率。考虑到经典的自由基聚合(FRP)和筏聚合,制备水凝胶颗粒。交替使用市售的筏剂4-氰基-4-苯基羰基噻唑硫基 - 戊酸(CPA),2-(十二烷基硫核酸噻吩硫基)-2-甲基丙酸(DDMAT)和氰基甲基十二烷基三碳酸酯(CDT)。在不同的聚合时间下取样允许通过通过可溶性阶段的秒进行分析研究聚合动力学。在这些研究中使用了具有同时检测折射率,光散射,固有粘度和紫外线信号的Tetra检测器阵列。还评估了在线ITIR-ATR监控的有用性,还评估了这些网络的建设过程。通过通过环境温度和pH的变化引发的药物递送试验研究了水凝胶珠粒的性能。该研究旨在促进合成条件,分子结构和这种先进材料的性能之间的联系的阐明。

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