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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Water Is a Poor Solvent for Densely Grafted Poly(ethylene oxide) Chains: A Conclusion Drawn from a Self-Consistent Field Theory-Based Analysis of Neutron Reflectivity and Surface Pressure-Area Isotherm Data
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Water Is a Poor Solvent for Densely Grafted Poly(ethylene oxide) Chains: A Conclusion Drawn from a Self-Consistent Field Theory-Based Analysis of Neutron Reflectivity and Surface Pressure-Area Isotherm Data

机译:水是致密接枝聚环氧乙烷链的不良溶剂:从基于自洽场理论的中子反射率和表面压力面积等温线数据分析得出的结论

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By use of a combined experimental and theoretical approach, a model poly(ethylene oxide) (PEO) brush system, prepared by spreading a poly(ethylene oxide)-poly(n-butyI acrylate) (PEO-PnBA) amphiphilic diblock copolymer onto an air-water interface, was investigated. The polymer segment density profiles of the PEO brush in the direction normal to the air-water interface under various grafting density conditions were determined by using the neutron reflectivity (NR) measurement technique. To achievea theoretically sound analysis of the reflectivity data, we used a data analysis method that utilizes the self-consistent field (SCF) theoretical modeling as a tool for predicting expected reflectivity results for comparison with the experimental data. Using this data analysis technique, we discovered that the effective Flory-Huggins interaction parameter of the PEO brush chains is significantly greater than that corresponding to the 0 condition in Flory-Huggins solutions (i.e., χ_([EP-water) (brush chains)/ χ_([EP-water)(θ condition) ≈ 1.2), suggesting that contrary to what is more commonly observed for PEO in normal situations χ_([EP-water)(free chains)/χ_([EP-water)(θ condition) ≈ 0.92), the PEO chains are actually not "hydrophilic" when they exist as polymer brush chains, because of the many body interactions that are forced to be effective in the brush situation. This result is further supported by the fact that the surface pressures of the PEO brush calculated on the basis of the measured χ_([EP-water) value are in close agreement with the experimental surface pressure-area isotherm data. The SCF theoretical analysis of the surface pressure behavior of the PEO brush also suggests that even though the grafted PEO chains experience a poor solvent environment, the PEO brush layer exhibits positive surface pressures, because the hydrophobicity of the PEO brush chains (which favors compression) is insufficient to overcome the opposing effect of the chain conformational entropy (which resists compression).
机译:通过使用实验和理论相结合的方法,通过将聚环氧乙烷-聚丙烯酸正丁酯(PEO-PnBA)两亲性二嵌段共聚物铺展到硅橡胶上而制得模型聚环氧乙烷(PEO)毛刷系统。空气-水界面进行了调查。通过使用中子反射率(NR)测量技术,确定了在各种接枝密度条件下,PEO刷在垂直于空气-水界面方向上的聚合物链段密度分布。为了实现对反射率数据的理论上合理的分析,我们使用了一种数据分析方法,该方法利用自洽场(SCF)理论模型作为预测与实验数据进行比较的预期反射率结果的工具。使用该数据分析技术,我们发现,PEO刷链的有效Flory-Huggins相互作用参数明显大于Flory-Huggins解决方案中与0条件相对应的参数(即χ_([EP-water)(刷链) /χ_([EP-water](θcondition)≈1.2),这表明与正常情况下χ_([EP-water)(自由链)/χ_([EP-water]( θ条件≈0.92),当PEO链作为聚合物刷链存在时,实际上并不是“亲水的”,因为在刷牙情况下许多身体相互作用被迫有效。该结果进一步得到以下事实的支持:基于测得的χ_([EP-water)值计算出的PEO刷的表面压力与实验表面压力-面积等温线数据非常吻合。 SCF对PEO刷的表面压力行为的理论分析也表明,即使接枝的PEO链遇到不良的溶剂环境,PEO刷层也显示出正的表面压力,因为PEO刷链的疏水性(有利于压缩)不足以克服链构象熵的相反作用(抵抗压缩)。

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