首页> 外文期刊>Journal of Colloid and Interface Science >Relaxation spectra and viscoelastic behavior of a model hydrophobically modified alkali-soluble emulsion (HASE) polymer in salt/SDS solutions
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Relaxation spectra and viscoelastic behavior of a model hydrophobically modified alkali-soluble emulsion (HASE) polymer in salt/SDS solutions

机译:疏水改性碱可溶乳液(HASE)聚合物在盐/ SDS溶液中的弛豫光谱和粘弹性行为

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The viscoelastic behavior of a semidilute hydrophobically modified alkali-soluble emulsion (HASE)-C20 polymer in NaCl and NaCl/SDS (sodium dodecyl sulfate) solutions was determined using a Rheometric fluids rheometer and the data were converted to relaxation spectra. The dynamic moduli can be fitted with a multiple modes Maxwell model. In the presence of increasing amounts of NaCl, the moduli decrease, where G', decreases more rapidly than G ". However, in the presence of SDS and 0.4 M NaCl, the dynamic moduli increase to a maximum at a critical concentration and decrease thereafter. The relaxation spectra suggest that the structure of the polymer network is complex and it contains two to six relaxation times, depending on the NaCl or SDS/0.4 M NaCl concentrations. With increasing NaCl concentrations, the fastest peak shifts to longer times while the slowest peak decreases. This corresponds to the destruction of the network as the polymer backbone collapses to form clusters with a larger aggregation number. For HASE in SDS/0.4 M NaCl solutions, the lifetime of both the hydrophobic junction (fastest peak) and network relaxation (slowest peak) shift to longer times, which suggests the strengthening of active junctions by bound SDS molecules. However, beyond a critical SDS concentration, the relaxation time of the polymer and hydrophobic junction decreases to an asymptotic value. (C) 2000 Academic Press. [References: 33]
机译:使用流变流体流变仪测定在NaCl和NaCl / SDS(十二烷基硫酸钠)溶液中的半稀释疏水改性碱溶性乳液(HASE)-C20聚合物的粘弹性行为,并将数据转换为弛豫谱。动态模量可以与多种模式的麦克斯韦模型拟合。在NaCl含量增加的情况下,模量下降,其中G'比G“下降更快。但是,在存在SDS和0.4 M NaCl的情况下,动态模量在临界浓度下增加到最大值,然后降低弛豫谱表明,聚合物网络的结构很复杂,取决于NaCl或SDS / 0.4 M NaCl的浓度,它包含2至6个弛豫时间,随着NaCl浓度的增加,最快的峰移到更长的时间,而最慢的峰移到更长的时间。峰减少。这对应于网络的破坏,因为聚合物主链崩溃形成具有更大聚集数的簇。对于SDS / 0.4 M NaCl溶液中的HASE,疏水键的寿命(最快的峰)和网络弛豫(最慢的峰)移动到更长的时间,这表明结合的SDS分子增强了活性连接,但是,超过临界SDS浓度,polym的弛豫时间er和疏水结减少至渐近值。 (C)2000学术出版社。 [参考:33]

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