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Synthesis and aggregates of cellulose-based hydrophobically associating polymer

机译:纤维素基疏水缔合聚合物的合成及其聚集体

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A novel cellulose-based hydrophobically associating water-soluble polymer-cellulose octaonate sulfate(COS)was synthesized in this paper.The basic physico-chemical properties such as surface tension and the critical aggregation concentration(cac)were measured by the conventional Wilhelmy plate method.The obtained cac value was compared with environmental scanning electron microscopy(ESEM)and Rheology data.All these results indicated that cac of this amphiphilic polymer was between the range 0.04 and 0.2 wt% and the corresponding surface tension was around 55 mN/m.The conformation of aggregates and size of particles in aqueous solution were carefully investigated by ESEM and dynamic laser scattering(DLS)measurements.When the concentration is around 0.04 wt%,loose aggregates are formed;around 0.5 wt%,network structure formed.DLS results indicated that average size of particle was increased from 54.7 nm to 73nm and finally to 168.1 nm with the increase of concentration from 0.04% to 0.1%and even to 0.2%.These results suggested that almost all of micelles in aqueous solution aggregated at the experimental concentration range 0.04-0.5 wt%.Rheological properties of this polymer were similar to hydrophobically associating polymers'(HMP).As the shear rate increased,the solution passed through a shear-thickening region before exhibiting a sharp decrease in viscosity,eventually exhibited Newtonian behavior.
机译:本文合成了一种新型的纤维素基疏水缔合型水溶性高分子纤维素八酸硫酸盐(COS),采用常规的Wilhelmy平板法测定了表面张力和临界聚集浓度(cac)等基本理化性质。将获得的cac值与环境扫描电子显微镜(ESEM)和流变学数据进行比较。所有这些结果表明,该两亲聚合物的cac在0.04至0.2wt%的范围内,并且相应的表面张力为约55mN / m。通过ESEM和动态激光散射(DLS)测量仔细研究了水溶液中的聚集体构型和颗粒尺寸。当浓度约为0.04 wt%时,形成松散的聚集体;约0.5 wt%时,形成网络结构.DLS结果表明,随着浓度从0.04%增加到0.1%,平均粒径从54.7 nm增加到73nm,最后增加到168.1 nm。 d甚至达到0.2%。这些结果表明,几乎所有胶束都在实验浓度范围为0.04-0.5 wt%的范围内聚集。该聚合物的流变性质类似于疏水缔合聚合物(HMP)。随着剪切速率的增加,溶液在粘度急剧下降之前先通过剪切增稠区,最终表现出牛顿行为。

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