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Collapse Of Langmuir Monolayer At Lower Surface Pressure: Effect Of Hydrophobic Chain Length

机译:Langmuir Monolayer倒塌在较低的表面压力下:疏水链长的效果

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Long chain fatty acid molecules (e.g., stearic and behenic acids) form a monolayer on water surface in the presence of Ba~(2+) ions at low subphase pH (≈ 5.5) and remain as a monolayer before collapse generally occurs at higher surface pressure (π_c > 50 mN/m). Monolayer formation is verified from the surface pressure vs. area per molecule (π-A) isotherms and also from the atomic force microscopy (AFM) analysis of the films deposited by single upstroke of hydrophilic Si (001) substrate through the monolayer covered water surface. At high subphase pH (≈ 9.5), barium stearate molecules form multilayer structure at lower surface pressure which is verified from the π-A isotherms and AFM analysis of the film deposited at 25 mN/m. Such monolayer to multilayer structure formation or monolayer collapse at lower surface pressure is unusual as at this surface pressure generally fatty acid salt molecules form a monolayer on the water surface. Formation of bidentate chelate coordination in the metal containing headgroups is the reason for such monolayer to multilayer transition. However, for longer chain barium behenate molecules only monolayer structure is maintained at that high subphase pH (≈ 9.5) due to the presence of relatively more tail-tail hydrophobic interaction.
机译:长链脂肪酸分子(例如,硬脂酸和山酸)在低亚相pH(≈5.5)的Ba〜(2+)离子存在下在水面上形成单层,并在坍塌通常在较高表面发生之前留下单层压力(π_c> 50mn / m)。从每分子压力与区域(π-a)等温线和来自由单层覆盖的水表面的单一覆盖水表面沉积的薄膜的原子力显微镜(AFM)分析验证单层形成。 。在高亚相pH(≈9.5)中,钡硬脂酸钡分子在较低表面压力下形成多层结构,其从π-a等温验证的膜和AFM分析沉积在25mN / m时。这种单层对多层结构的形成或单层塌陷在下表面压力下是不寻常的,因为在该表面压力下通常脂肪酸盐分子在水面上形成单层。在含有头组的金属中形成双齿螯合物协调是这种单层对多层过渡的原因。然而,对于较长的链较长的钡斩首分子,由于存在相对较长的尾部疏水相互作用,因此在高分子pH(≈9.5)中仅保持单层结构。

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