首页> 外文期刊>Bulletin of the Chemical Society of Japan >Role of the succinate skeleton in the disorder-order transition of AOT and its analogous molecules: Detection by infrared absorption spectra of the configurations arising from the difference in torsion angles of the succinate skeleton
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Role of the succinate skeleton in the disorder-order transition of AOT and its analogous molecules: Detection by infrared absorption spectra of the configurations arising from the difference in torsion angles of the succinate skeleton

机译:琥珀酸酯骨架在AOT及其类似分子的无序转变中的作用:通过红外吸收光谱检测由琥珀酸酯骨架的扭转角不同引起的构型

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摘要

The IR spectra in the 13001450 cm~(-1) region, which reflect the CH and CH_2 deformation vibrational modes of the succinate skeleton, have been investigated in detail for sodium dialkylsulfonates (alkyl groups: Ethyl, n-propyl, n-butyl, n-hexyl, n-heptyl, n-octyl, n-decyl, and n-dodecyl) and sodium 1,2-bis(2-ethylhexyl)sulfosuccinate (sodium 1,2-bis(2- ethylhexyloxycarbonyl)ethanesulfonate) (AOT). The results have provided clear evidence that two configurations, arising from the difference in the torsion angles of the succinate skeleton, are preferentially stabilized in aqueous solution as well as in the solid state, depending upon the concentration. Thus, the IR spectra of this region can be used as a powerful tool for elucidation of the mechanism of the disorderorder transition in aggregate systems of AOT or its homologs at the molecular level.
机译:对于二烷基磺酸钠(烷基:乙基,正丙基,正丁基,正丁基,正丁基,正丁基,正丁基,正丁基,正丁基,正丁基,正丁基,正丁基,正己基,正庚基,正辛基,正癸基和正十二烷基)和1,2-双(2-乙基己基)磺基琥珀酸钠(1,2-双(2-乙基己基氧基羰基)乙磺酸钠)(AOT )。结果提供了明确的证据,根据浓度,琥珀酸骨架的扭转角的不同引起的两种构型优选在水溶液中以及在固态中都稳定。因此,该区域的红外光谱可以用作在分子水平上阐明AOT聚集系统或其同系物的无序转变机理的有力工具。

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