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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Fluorinated polar heads can strikingly increase or invert the dipole moments at the Langmuir monolayer-water boundary: Possible effects from headgroup conformations
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Fluorinated polar heads can strikingly increase or invert the dipole moments at the Langmuir monolayer-water boundary: Possible effects from headgroup conformations

机译:氟化的极头会显着增加或反转Langmuir单层水边界的偶极矩:头基构象可能产生的影响

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The dipole potential of lipid monolayers and bilayers is positive toward their nonpolar moiety. In previous papers, we have shown that designed molecules with fluorinated polar heads can invert the polarity of un-ionized Langmuir films. Monolayers of long-chain trifluoroethyl ester RCOOCH2CF3 and trifluoroethyl ether ROCH2CF3 exhibit large negative Delta V values, shifted by 150-200% from the positive dipole potentials of their non-fluorinated analogs (Petrov and Mohwald J. Phys. Chem. 1996, 100, 18458; Petrov et al. J. Phys. Chem. B 2005, 109, 14102). Here we report large positive surface (dipole) potentials of monolayers of N-trifluoroethyl docosanamide RCONHCH2CF3 and a 300% Delta V shift with respect to the non-fluorinated N-ethyl docosanamide films. Comparing the dipole potentials and normal dipole moments of the RCONHCH2CF3 and RCOOCH2CF3 monolayers and the maps of the local electrostatic potential (MEP) and lipophilicity (MLP) of their molecules in vacuum, we conclude that the opposite Delta V shifts and the difference of 1480 mV between the films of these structurally similar amphiphiles seem to be due to strongly different conformations of their heads. The large positive Delta V values of the N-trifluoroethyl amide monolayer was related to the network of (NHOC)-O-... bonds fixing the orientation of the hydrophobic C delta+-F-3(delta-) dipoles toward water. The trifluoroethyl ester heads do not form H-bonds and can adjust their energetically optimal conformation orienting the hydrophobic C delta+-F-3(delta-) dipoles toward air. The opposite signs of the dipole potential and the apparent normal dipole moments of the trifluoroethyl ester and ethyl ester monolayers were explained via energy minimization of 36 upright closely packed molecules with "hook-like" heads. The equilibrium architecture of this ensemble shows statistical distribution of the headgroup conformations and a nano-rough monolayer-water boundary as known from X-ray reflectivity experiments and molecular dynamic simulations of phospholipid monolayers and bilayers. The average of the vertical molecular dipole moments at equilibrium agree fairly well with the measured values of mu, and the mean molecular area in the ensemble 19.3 A(2) matches the value of 18.9 +/- 0.2 A(2) determined via X-ray diffraction at gracing incidence surprisingly well. These results reflect the balance of the attractive and repulsive forces between the closely packed "dry" amphiphilic molecules, but a more sophisticated molecular modeling explicitly including water would better serve to reveal the mechanism of the observed effects.
机译:脂质单层和双层的偶极电势对其非极性部分为正。在以前的论文中,我们表明,带有氟化极性头的设计分子可以反转未电离的Langmuir膜的极性。长链三氟乙基酯RCOOCH2CF3和三氟乙基醚ROCH2CF3的单层显示出较大的负Delta V值,从其非氟化类似物的正偶极电势偏移了150-200%(Petrov和Mohwald J. Phys。Chem。1996,100, 18458; Petrov等人,J.Phys.Chem.B 2005,109,14102)。在这里,我们报道了N-三氟乙基椰油酰胺RCONHCH2CF3的单层大正表面(偶极)势和相对于非氟化N-乙基椰油酰胺膜300%的Delta V偏移。比较RCONHCH2CF3和RCOOCH2CF3单层的偶极电势和正常偶极矩,以及它们在真空中的分子的局部静电势(MEP)和亲脂性(MLP)的图谱,我们得出结论,相反的Delta V漂移和1480 mV的差这些结构相似的两亲物的膜之间的差异似乎是由于其头部的构象差异很大。 N-三氟乙基酰胺单层的大正Delta V值与(NHOC)-O -...键的网络有关,该键固定了疏水性C delta + -F-3(delta-)偶极子朝向水的方向。三氟乙基酯头不形成氢键,可以调节其能量最佳构象,使疏水性C delta + -F-3(delta-)偶极子指向空气。三氟乙基酯和乙基酯单层的偶极电势和表观正常偶极矩的相反符号是通过36个具有“钩状”头的直立紧密堆积分子的能量最小化来解释的。该集合体的平衡结构显示了头基构象的统计分布以及纳米粗糙的单层-水边界,这是从X射线反射率实验以及磷脂单层和双层的分子动力学模拟中得知的。平衡时垂直分子偶极矩的平均值与mu的测量值非常吻合,并且集合19.3 A(2)中的平均分子面积与通过X-确定的18.9 +/- 0.2 A(2)值匹配射线衍射在gracing入射时出奇地好。这些结果反映了紧密堆积的“干燥”两亲分子之间的吸引力和排斥力之间的平衡,但是明确包括水的更复杂的分子模型将更好地揭示观察到的作用机理。

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