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首页> 外文期刊>Journal of Applied Polymer Science >Effect of hydrophobic modification on the rheological properties of Poly(N-vinyl pyrrolidone-co-dimethylaminopropylmethacrylamide)
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Effect of hydrophobic modification on the rheological properties of Poly(N-vinyl pyrrolidone-co-dimethylaminopropylmethacrylamide)

机译:疏水改性对聚(N-乙烯基吡咯烷酮-二甲基氨基丙基甲基丙烯酰胺)流变性能的影响

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The viscoelastic properties of poly(N-vinyl pyrrolidone-co-dimethylaminopropylmethacrylamide) (copolymer I) and its hydrophobically modified analogue, poly(N-vinyl pyrrolidone-dimethylaminopropylmethacrylamide-dimethylaminopropylmethacrylamide (circle plus)-C12H25Cl circle minus) (copolymer II), were compared in the concentration range from I to 20% with dynamic and Brookfield rheometers. In addition, gel permeation chromatography/multi-angle laser light scattering light scattering data were obtained to characterize the molecular weights and radii of gyration. for the polymer samples. In general, the hydrophobically modified polymer copolymer II was characterized by a chain configuration that was more compact and a viscosity that was an order of magnitude lower than that of its unmodified counterpart, copolymer I (both polymers were characterized by similar molecular weights), in dilute (1% w/w) and semiconcentrated solutions (<5% w/w). The difference in the chain configurations resulted in significant differences in the measured viscosities of the polymer solutions as a function of polymer concentration and in the presence of added electrolyte. On the basis of dynamic rheological measurements for more concentrated solutions in the range of 5-10% for copolymer I and 5-20% for copolymer 11, the viscous modulus predominated (loss modulus > storage modulus), with crossover points occurring at 10% (w/w) and 10 Hz for copolymer I and 20% (w/w) and 20 Hz for copolymer II. The mixtures of copolymer II with anionic surfactants, such as sodium dodecyl sulfate and polyoxyethylene (2) dodecyl ether sulfate (sodium laureth-2-sulfate), showed strong interactions by exhibiting viscosity maxima and flocculation points corresponding to the surfactant/polymer alkyl group and surfactant/polymer charge concentration ratios in the range of 1-2. Copolymer Il showed network formation by significant viscosity buildup in combination with two nonionic surfactants, which included C14-15 Pareth-7 and C12-13 Pareth-3. On the basis of viscosity measurements, copolymer I was found not to interact with anionic and nonionic surfactants. (C) 2007 Wiley Periodicals, Inc.
机译:聚(N-乙烯基吡咯烷酮-二甲基氨基丙基甲基丙烯酰胺共聚物)及其疏水改性的类似物聚(N-乙烯基吡咯烷酮-二甲基氨基丙基甲基丙烯酰胺-二甲基氨基丙基甲基丙烯酰胺(圆圈加号)-C12H25Cl圆圈减)的粘弹性能(共聚物II)为用动态流变仪和布鲁克菲尔德流变仪测得的浓度范围为I至20%。另外,获得凝胶渗透色谱/多角度激光散射光散射数据,以表征分子量和回转半径。用于聚合物样品。通常,疏水改性的聚合物共聚物II的特征是链结构更紧密,粘度比未改性的共聚物I(两种聚合物的分子量均相近)要低得多。稀释(1%w / w)和半浓缩溶液(<5%w / w)。链构型的差异导致聚合物溶液的测量粘度随聚合物浓度和添加电解质的变化而显着不同。根据对更浓溶液的动态流变学测量,对于共聚物I,其浓度范围为5-10%,对于共聚物11为5-20%,粘度模量占主导地位(损耗模量>储能模量),交叉点发生在10%时(w / w)和10 Hz对于共聚物I,20%(w / w)和20 Hz对于共聚物II。共聚物II与阴离子表面活性剂的混合物,例如十二烷基硫酸钠和聚氧乙烯(2)十二烷基醚硫酸钠(月桂基-2-硫酸钠),通过表现出最大粘度和对应于表面活性剂/聚合物烷基和表面活性剂/聚合物电荷浓度比为1-2。共聚物II通过与两种非离子型表面活性剂(包括C14-15 Pareth-7和C12-13 Pareth-3)结合显着增加粘度而显示出网络形成。根据粘度测量,发现共聚物I不与阴离子和非离子表面活性剂相互作用。 (C)2007 Wiley期刊公司

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