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Measuring the optical chirality of molecular aggregates at liquid–liquid interfaces

机译:测量液-液界面处分子聚集体的光学手性

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Some new experimental methods for measuring the optical chirality of molecular aggregates formed at liquid–liquid interfaces have been reviewed. Chirality measurements of interfacial aggregates are highly important not only in analytical spectroscopy but also in biochemistry and surface nanochemistry. Among these methods, a centrifugal liquid membrane method was shown to be a highly versatile method for measuring the optical chirality of the liquid–liquid interface when used in combination with a commercially available circular dichroism (CD) spectropolarimeter, provided that the interfacial aggregate exhibited a large molar absorptivity. Therefore, porphyrin and phthalocyanine were used as chromophoric probes of the chirality of itself or guest molecules at the interface. A microscopic CD method was also demonstrated for the measurement of a small region of a film or a sheet sample. In addition, second-harmonic generation and Raman scattering methods were reviewed as promising methods for detecting interfacial optical molecules and measuring bond distortions of chiral molecules, respectively.
机译:审查了一些新的实验方法来测量在液-液界面形成的分子聚集体的光学手性。界面聚集体的手性测量不仅在分析光谱学中而且在生物化学和表面纳米化学中都非常重要。在这些方法中,离心液膜法被证明是一种非常通用的方法,当与市售的圆二色性(CD)分光旋光仪结合使用时,可以测量液-液界面的光学手性,但前提是界面聚集体应具有摩尔吸收率大。因此,卟啉和酞菁被用作本身或界面上客体分子的手性的发色探针。还证明了使用显微CD方法测量薄膜或片状样品的小区域。此外,二次谐波产生法和拉曼散射法分别被认为是检测界面光学分子和测量手性分子键畸变的有前途的方法。

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