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Detection of Interfacial Structures of Poly(ethylene glycol), Poly(propylene glycol) and Their Copolymers at Liquid/Solid Interfaces Using Sum Frequency Generation Vibrational Spectroscopy

机译:使用和频率产生振动光谱检测聚(乙二醇),聚(丙二醇),聚(丙二醇),聚(丙二醇)及其共聚物的界面结构

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We have applied sum frequency generation (SFG) vibrational spectroscopy, a submonolayer surface sensitive analytical technique, to study interfacial structures of poly (ethylene glycol) (PEG), poly (propylene glycol) (PPG), their solutions, their copolymers, and copolymer solutions while contacting different media including air, fused silica, and various polymers. For the first time, conformations of polyether materials at various interfaces have been shown at the molecular level in situ. Depending on the hydrophobicity of the solid contacting media, the liquid polymers PEG and PPG show different conformations at different interfaces, which can be correlated to molecular interactions at these interfaces. The favorable interaction between hydrophobic media and the hydrophobic segments, methylene or methyl groups, of polyethers causes an ordered conformation with these groups standing up at the interface. The unfavorable interaction between hydrophilic media and hydrophobic segments of the polyethers induces interfacial methylene or methyl groups to have a random structure or to lie down at the interfaces, indicated by the weakening or even absence of SFG signals. For comparison, interfaces between aqueous PEG or PPG solutions and air, polystyrene (PS), poly(methyl methacrylate) (PMMA), and fused silica have also been investigated. In addition, we have studied conformations of pluronics at various interfaces, showing that different blocks have different interface activities. The interfaces are always dominated by the PPG segments. The studies on molecular level interfacial structures of PEG, PPG and pluronics will help us to understand and control the interfacial behavior of liquids at interfaces.
机译:我们已经申请和频产生(SFG)振动光谱学,亚单层表面灵敏的分析技术,以研究聚(乙二醇)(PEG),聚(丙二醇)(PPG),它们的解决方案,它们的共聚物,和共聚物的界面结构解决方案,同时接触不同介质包括空气,熔凝硅石,和各种聚合物。对于第一次,在各种接口聚醚材料的构象已显示在原位分子水平。根据固体接触介质的疏水性,所述液体聚合物的PEG和PPG示出了在不同的接口,其可以在这些界面处被关联到分子间的相互作用不同的构象。聚醚的疏水介质和疏水性链段,亚甲基或甲基基团之间的有利的相互作用,引起与这些基团在界面处竖立的有序构象。亲水性媒介和聚醚诱导界面亚甲基或甲基基团的疏水性链段之间的不利的相互作用具有无规结构或躺下界面处,通过​​减弱或甚至不存在SFG信号的指示。为了进行比较,水性PEG或PPG的解决方案和空气,聚苯乙烯(PS),聚(甲基丙烯酸甲酯)(PMMA),和稠合的界面二氧化硅也进行了研究。此外,我们在不同的界面研究泊洛沙姆的构象,显示出不同块具有不同接口的活动。该接口总是由PPG段为主。在PEG,PPG和泊洛沙姆的分子水平的界面结构的研究将有助于我们理解和控制液体在界面的界面行为。

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