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The Structure of Model Membranes Studied by Vibrational Sum Frequency Spectroscopy

机译:振动和频谱研究模型膜的结构

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The structure and order of insoluble Langmuir monolayers consisting of l,2-distearoyl-sn-glycero-3-phos phatidylcholine (DSPC or 18:0 PC) and the surrounding water molecules have been investigated by vibrational sum frequency spectroscopy (VSFS). At surface pressures of 1, 15, and 57 mN/m corresponding to molecular areas of 53, 50, and 43 ?~2, respectively, the DSPC molecules formed a well ordered film. Both the VSF signal from the methyl stretching vibrations of the lipid and the surrounding water increased with enhanced surface pressure, as a result of the higher surface density and increased order of the system. Water molecules hydrating the polar parts of the headgroup and in close contact to the hydrocarbon groups of the lipid were observed in all three polarization combinations of the laser beams, and distinguished by their different vibrational frequencies.
机译:已经通过振动和频光谱法(VSFS)研究了由1,2-二硬脂酰基-sn-甘油-3-磷磷脂酰胆碱(DSPC或18:0 PC)和周围的水分子组成的不溶性朗缪尔单层的结构和顺序。在分别对应于53、50和43Ω·2的分子面积的1、15和57 mN / m的表面压力下,DSPC分子形成了有序的膜。由于较高的表面密度和系统级数增加,来自脂质和周围水的甲基拉伸振动的VSF信号都随着表面压力的增加而增加。在激光束的所有三种偏振组合中均观察到水分子水合了头基团的极性部分并与脂质的烃基紧密接触,并以其不同的振动频率进行了区分。

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