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Excitation energy transfer from sulforhodamine 101 to Acid Blue 1 at a liquid/liquid interface: Experimental approach to estimate interfacial roughness

机译:在液/液界面处从磺基罗丹明101到酸性蓝1的激发能转移:估计界面粗糙度的实验方法

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Dynamic fluorescence anisotropy of Sulforhodamine 101 (SR101) and excitation energy transfer from SR101 to Acid Blue 1 (AB1) at water/carbon tetrachloride (CCL4) and water/1,2-dichloroethane (DCE) interfaces were studied by using time-resolved total-internal-reflection (TIR) fluorometry, A magic-angle dependence of the TIR fluorescence dynamic anisotropy revealed that rotational reorientation of SR101 at the water/CCl4 interface was restricted in the two-dimensional plane of the interface, while that at the water/DCE interface took place rather freely, similar to reorientation in an isotropic medium. Furthermore, the structural dimension derived fi om the excitation energy transfer dynamics measurements at the water/CCl4 or water/DCE interface was 1.93 or 2.48, respectively. These results indicated that the water/CCl4 interface was sharp with respect to the molecular size of SR101 (similar to 10 Angstrom), while the water/DCE interface was relatively rough compared to the water/CCl4 interface. Structural dimension analysis of excitation energy transfer dynamics between dye molecules adsorbed on the water/oil interface measured under the TIR conditions was shown to be a potential means to estimate roughness/ thickness of the interface at a molecular level. The present results were also compared with those predicted from molecular dynamics simulations. [References: 39]
机译:研究了磺胺多巴胺101(SR101)的动态荧光各向异性以及在水/四氯化碳(CCL4)和水/ 1,2-二氯乙烷(DCE)界面上从SR101到酸性蓝1(AB1)的激发能转移-内部反射(TIR)荧光测定法,TIR荧光动态各向异性的魔角依赖性显示,SR101在水/ CCl4界面的旋转重新取向受到界面二维平面的限制,而在水/ CCl4界面的二维方向受到限制DCE界面相当自由地发生,类似于在各向同性介质中的重新定向。此外,由水/ CCl4或水/ DCE界面处的激发能传递动力学测量得出的结构尺寸分别为1.93或2.48。这些结果表明,水/ CCl4界面相对于SR101的分子大小(大约10埃)非常尖锐,而水/ DCE界面与水/ CCl4界面相比则相对粗糙。在TIR条件下测得的吸附在水/油界面上的染料分子之间的激发能转移动力学的结构尺寸分析表明,这是一种在分子水平上估计界面粗糙度/厚度的潜在手段。本结果也与分子动力学模拟预测的结果进行了比较。 [参考:39]

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