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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Syntheses and characterization of physically crosslinked hydrogels from dithiocarbamate-derived polyurethane macroiniferter
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Syntheses and characterization of physically crosslinked hydrogels from dithiocarbamate-derived polyurethane macroiniferter

机译:二硫代氨基甲酸酯衍生的聚氨酯大分子引发剂物理交联的水凝胶的合成与表征

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A dithiocarbamate (DC)-based polyurethane macroiniferter (PUMI) was synthesized and used to prepare physically crosslinked polyurethane-block-poly (acrylamide) (PU-b-PAAm) and polyurethane-block-poly(vinyl pyrrolidone) (PU-b-PVP) hydrogels. The success of the reactions has been confirmed by FTIR, H-1-NMR, and C-13-NMR Spectroscopy analyses. The number average molecular weight of the block copolymers increased linearly with conversion and copolymerization time and thus followed a "living" radical mechanism. The water transport behavior of these polyurethane-based hydrogels such as water uptake rate, equilibrium water content (EWC), transport number (n), characteristic diffusion rate constant (K), diffusion coefficient (D), and pH effect on EWC has been investigated. The results revealed that PU-b-PAAm hydrogels followed Fickian diffusion suggesting diffusion controlled swelling kinetics, whereas the PU-b-PVP hydrogels followed non-Fickian diffusion indicating that both diffusion and structural relaxation controlled the water transport. The PU-b-PAAm hydrogels showed higher swelling at both low and high pH than at a neutral pH. This is attributed to protonation of the tertiary amines of N,N'-diethyl-N,N'-bis(2-hydroxyethyl) thiuram, disulfide (DHTD) at low pH and base hydrolysis of amide segments at high pH. In the thermogravimetric analysis; PUMI, PU-b-PVP and PU-b-PAAm have degraded in three distinct stages related to CS2 evolution, bard segment degradation, and soft segment degradation. (C) 2008 Wiley Periodicals, Inc.
机译:合成了基于二硫代氨基甲酸酯(DC)的聚氨酯大分子引发剂(PUMI),并用于制备物理交联的聚氨酯嵌段-聚(丙烯酰胺)(PU-b-PAAm)和聚氨酯嵌段-聚(乙烯基吡咯烷酮)(PU-b- PVP)水凝胶。通过FTIR,H-1-NMR和C-13-NMR光谱分析证实了反应的成功。嵌段共聚物的数均分子量随转化率和共聚时间线性增加,因此遵循“活性”自由基机理。这些聚氨酯基水凝胶的水传输行为如吸水率,平衡水含量(EWC),传输数(n),特征扩散速率常数(K),扩散系数(D)和pH对EWC的影响调查。结果表明,PU-b-PAAm水凝胶遵循Fickian扩散,表明扩散控制溶胀动力学,而PU-b-PVP水凝胶遵循非Fickian扩散,表明扩散和结构弛豫均控制着水的传输。 PU-b-PAAm水凝胶在低和高pH下均显示出比中性pH更高的溶胀。这归因于低pH下N,N'-二乙基-N,N'-双(2-羟乙基)秋兰姆,二硫化物(DHTD)的叔胺的质子化和高pH下酰胺链段的碱水解。在热重分析中; PUMI,PU-b-PVP和PU-b-PAAm已在与CS2进化,裸段降解和软段降解相关的三个不同阶段降解。 (C)2008 Wiley期刊公司

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