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New Phenomena in Phase Transition and Accurate Determination of Orientational Order in Langmuir Monolayer

机译:阶段过渡中的新现象和Langmuir Monolayer中精确确定定位顺序

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Langmuir monolayer at the air/water interface is considered ideal model for studying 2-dimensional phase behaviors. In this work, the molecular detail on phase transition and orientational order in Langmuir monolayer is studied with simultaneous measurements using surface Second Harmonic Generation (SHG) and surface pressure. With the general methodology for SHG orientational analysis developed recently in our group, we studied the 4'-n-octyl-4-cyanobiphenyl (8CB) monolayer at the air/water interface. We were able to determine both the orientational angle and angular distribution, and also to determine the orientational angular changes in the liquid phase of the 8CB monolayer. These new data pointed to a novel phenomenon which can be attribute to the domain interaction driven orientation distribution narrowing (DIDODIN) mechanism during the orientational phase transition, which implies the phase transition is second-order. The same phenomenon is also observed for a quite different molecular system. Parc18. It implies this phenomenon can be general for Langmuir monolayers. Our findings demonstrated that quantitative orientational analysis is capable of determining the molecular interactions at interfaces in surprising details, which are responsible for the behaviors of the phase transition and orientational order in the Langmuir monolayer and molecular films.
机译:空气/水界面的Langmuir Monolayer被认为是研究二维相行为的理想模型。在这项工作中,研究了Langmuir Monolayer中相变和定义顺序的分子细节,并使用表面二次谐波产生(SHG)和表面压力同时测量。随着SHG取向分析的一般方法,最近在我们的组中开发,我们在空气/水界面上研究了4'-正辛基-4-氰基苯基(8cb)单层。我们能够确定取向角和角分布,并且还确定8CB单层的液相中的取向角变化。这些新的数据指出了一个新颖的现象可以是属性的取向相变,这意味着该相变过程中域相互作用从动取向分布变窄(DIDODIN)机制是二阶。对于相当不同的分子系统,也观察到相同的现象。 Parc18。它意味着这种现象可以是Langmuir Monolayers将军。我们的研究结果表明,定量分析取向能够确定在令人惊讶的细节接口,其负责在朗缪尔单分子层和分子薄膜的相变和取向秩序的行为的分子相互作用的。

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