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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Faceted structures in Langmuir monolayers of diethylene glycol mono-n-octadecyl ether at the air-water interface
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Faceted structures in Langmuir monolayers of diethylene glycol mono-n-octadecyl ether at the air-water interface

机译:空气-水界面的二乙二醇单正十八烷基醚Langmuir单层的多面结构

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摘要

We have concurrently studied the surface pressure (pi) versus area (A) isotherms and microscopic surface morphological features of Langmuir monolayers of diethylene glycol mono-n-octadecyl ether (C18E2) by film balance and Brewster angle microscopy (BAM) over a wide range of temperature. At temperatures less than or equal to10 degreesC, the monolayers exist in the form of condensed phase even just after the evaporation of the spreading solvent, suggesting that the melting point of the condensed phase is above this temperature. At greater than or equal to15 degreesC, the monolayers can exist as gas (G), liquid expanded (LE), and liquid condensed (LC) phases and undergo a pressure-induced first-order phase transition between LE and LC phases showing a sharp cusp point followed by a plateau region in the pi-A isotherms. A variety of 2-D structures, depending on the subphase temperature, are observed by BAM just after the appearance of the cusp point. It is interesting to note here that the domains attain increasingly large and compact shape as the subphase temperature increases and finally give faceted structures with sharp edges and corners at greater than or equal to30 degreesC. The BAM observations were coupled with polarization modulation infrared reflection absorption spectroscopy (PM-IRRAS) to gain better understanding regarding the conformational order and subcell packing of the molecules. The constancy of the methylene stretching modes over the studied temperature range suggests that the hydrocarbon chains do not undergo any conformational changes upon compression of the monolayer. However, the full width at half-maximum (fwhm) values of the asymmetric methylene stretching mode (v(as)(CH2)) are found to respond differently with changes in temperature. It is concluded that even though the trans/gauche ratio of the hydrocarbon chains remains virtually constant, the LE-LC phase transition upon compression of the monolayer is accompanied by a loss of the rotational freedom of the molecules.
机译:我们同时通过薄膜平衡和布鲁斯特角显微镜(BAM)在广泛的范围内研究了表面压力(pi)对面积(A)的等温线以及Langmuir单层二甘醇单正十八烷基醚(C18E2)的微观表面形态特征温度。在小于或等于10℃的温度下,即使在散布溶剂蒸发之后,单层也以冷凝相的形式存在,这表明冷凝相的熔点高于该温度。在大于或等于15摄氏度时,单分子层可以气相(G),液体膨胀(LE)和液体冷凝(LC)相的形式存在,并在LE和LC相之间经历压力诱导的一阶相变,表现出尖锐的pi-A等温线中的尖点之后是平台区域。在出现尖点之后,BAM会观察到各种二维结构,具体取决于子相温度。在此有趣的是,随着子相温度的升高,畴变得越来越大且紧凑,最终在大于或等于30摄氏度时给出具有锐利的边缘和角的刻面结构。 BAM观察与偏振调制红外反射吸收光谱(PM-IRRAS)结合使用,可以更好地了解分子的构象顺序和亚细胞堆积。在研究温度范围内,亚甲基拉伸模式的恒定性表明,烃链在单层压缩时不会发生任何构象变化。但是,发现不对称亚甲基拉伸模式(v(as)(CH2))的半峰全宽(fwhm)值对温度的变化有不同的响应。结论是,即使烃链的反式/合成比实际上保持恒定,单层压缩时的LE-LC相变也伴随着分子旋转自由度的损失。

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