首页> 外文期刊>Journal of Polymer Research >Synthesis, microstructural characterization and hydrophobic intermolecular nano-aggregation behavior of acrylamide/2-acrylamido-2-methy-1-propane sulfonic acid/butyl acrylate co- and terpolymers
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Synthesis, microstructural characterization and hydrophobic intermolecular nano-aggregation behavior of acrylamide/2-acrylamido-2-methy-1-propane sulfonic acid/butyl acrylate co- and terpolymers

机译:丙烯酰胺/ 2-丙烯酰胺基-2-甲基-1-丙烷磺酸/丙烯酸丁酯共聚物和三元共聚物的合成,微结构表征和疏水性分子间纳米聚集行为

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摘要

Acrylamide(AM)/butyl acrylate (BA) (as a hydrophobic monomer) copolymers and an AM/BA/2-acrylamido-2-methy-1-propane sulfonic acid (AMPS) terpolymer were synthesized in an aqueous medium using potassium persulfate as an initiator, in which heterogeneous (without emulsifier) and micellar (in the presence of sodium dodecyl sulfate as an emulsifier) copolymerization methods were employed. Fourier transform infrared (FTIR) and nuclear magnetic resonance (NMR) spectroscopy techniques were used to characterize the synthesized co- and terpolymers. Copolymer composition was determined from H-1-NMR spectra. The microstructure of the AM/BA copolymers was also evaluated through measurement of water solubility and calculation of the hydrophobic block length and monomer sequence length. The molecular weight of the copolymers was calculated from intrinsic viscosity measurements to be in a range of (0.5-1.5) x 10(6) g/mol. Results showed that the heterogeneous and micellar copolymerization methods resulted in random and multi-block distribution, respectively, of the BA comonomer in the copolymer chains. A reasonable relationship between the microstructure and water solubility of the copolymers was established. A hydrophobic BA block length (i.e., number of BA units per micelle) of approximately 10 was obtained using the micellar copolymerization method, which was found to be a limiting factor with regard to the water solubility of the copolymers. Dynamic light scattering measurements were used to study the hydrodynamic radii and hydrophobic nano-aggregation behavior of the samples. The hydrodynamic radii of polymer chains in a dilute aqueous solution were found to be in a range of 1-36 nm. Due to the presence of BA-associating hydrophobic groups, a small fraction of aggregations larger than 100 nm were also observed.
机译:丙烯酰胺(AM)/丙烯酸丁酯(BA)(作为疏水性单体)共聚物和AM / BA / 2-丙烯酰胺基-2-甲基-1-丙烷磺酸(AMPS)三元共聚物在水性介质中以过硫酸钾为原料合成。引发剂,其中使用了非均相的(没有乳化剂)和胶束(在十二烷基硫酸钠作为乳化剂的情况下)共聚方法。傅里叶变换红外(FTIR)和核磁共振(NMR)光谱技术用于表征合成的共聚物和三元共聚物。由H-1-NMR光谱确定共聚物组成。还通过测量水溶性和计算疏水嵌段长度和单体序列长度来评估AM / BA共聚物的微观结构。由特性粘度测量值计算出共聚物的分子量为(0.5-1.5)×10(6)g / mol。结果表明,异质和胶束共聚方法分别导致共聚物链中BA共聚单体的无规分布和多嵌段分布。建立了共聚物的微观结构和水溶性之间的合理关系。使用胶束共聚方法获得的疏水性BA嵌段长度(即,每个胶束中的BA单元数)为约10,这被发现是对共聚物的水溶性的限制因素。动态光散射测量用于研究样品的流体力学半径和疏水性纳米聚集行为。发现聚合物链在稀水溶液中的流体力学半径在1-36nm的范围内。由于存在与BA相关的疏水基团,因此还观察到一小部分大于100 nm的聚集体。

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