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Pendant-drop method coupled to ultraviolet-visible spectroscopy: A useful tool to investigate interfacial phenomena

机译:吊坠法与紫外-可见光谱法联用:研究界面现象的有用工具

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摘要

UV–vis spectroscopy is a powerful tool to investigate surface phenomena. Surface tension measurements coupled to spectroscopic techniques can help to elucidate how the interface organization influences the electronic properties of molecules. However, appreciable sample volumes are usually necessary to achieve strong signals during conduction of experiments. This study reports on the simultaneous acquisition of surface tension data and UV–vis spectra by axisymmetric drop shape analysis (ADSA) coupled to diffuse reflectance (DRUV) spectrophotometry using a pendant microliter-drop that requires small sample volumes and low analyte concentrations. Three example systems gave evidence of the applicability of this technique: (a) disaggregation of an organic dye driven by surfactant as a function of the surface tension and alterations in the UV–vis spectra, (b) activity of a glycosylphosphatidylinositol anchored enzyme estimated from formation of a colored product, and (c) interaction between this enzyme and biomimetic membrane systems consisting of dipalmitoylphosphaditylcholine and cholestenone. Apart from using smaller sample volume, this coupled technique allowed to investigate interfacial organization in the light of electronic spectra obtained in loco within a shorter acquisition time. This procedure provided precise interfacial information about static and dynamic systems. This has been the first study describing the kinetic activity of an enzyme in the presence of phospholipid monolayers through simultaneous determination of the surface tension and UV–vis spectra.
机译:紫外可见光谱是研究表面现象的有力工具。结合光谱技术的表面张力测量可以帮助阐明界面组织如何影响分子的电子特性。但是,通常需要一定数量的样品才能在实验进行期间获得强信号。这项研究报告了通过轴对称液滴形状分析(ADSA)与扩散反射率(DRUV)分光光度法同时使用悬垂微升液滴进行的同时采集表面张力数据和UV-vis光谱,该液滴体积小且分析物浓度低。三个示例系统证明了该技术的适用性:(a)表面活性剂驱动的有机染料的分解与表面张力和UV-vis光谱变化的关系,(b)由糖基磷脂酰肌醇锚定的酶的活性形成有色产物,以及(c)这种酶与由二棕榈酰磷酸二氢胆碱和胆甾烯酮组成的仿生膜系统之间的相互作用。除了使用较小的样品量外,这种耦合技术还允许在更短的采集时间内根据在机车中获得的电子光谱研究界面组织。此过程提供了有关静态和动态系统的精确界面信息。这是第一项通过同时测定表面张力和UV-vis光谱来描述存在磷脂单层时酶的动力学活性的研究。

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