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Evaluation of the polarity of polyamide surfaces using the fluorescence emission of pyrene

机译:使用of的荧光发射评估聚酰胺表面的极性

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摘要

This paper reports the static and dynamic fluorescence emission of pyrene sorbed onto the surface of 6 different polyamides classified in two categories: AB (polyamide-6 and -11) or AABB (polyamide-6,6, -6,9, -6,10 and -6,12). Pyrene is a well known fluorescent probe for the polarity evaluation of different media for which the ratio of intensities of the vibronic bands (I_1/I_3) decreases in less polar medium and the fluorescence decay from the singlet electronic excited state increases with decreasing polarity. The steady-state vibronic ratio I_1/I_3 of the pyrene fluorescence emission decreases with decreasing polarity for polyamides AB but for polyamides AABB, this ratio undergoes a significant decrease for poly-amides-6,9 compared with -6,6 but remains almost constant for polyamides-6,10 and -6,12. This shows that the steady-state fluorescence of pyrene is only sensitive to the polarity of sorption sites whose dimensions are similar to the van der Waals radius of the molecule. In contrast, fluorescence decays decrease with decreasing polarity of the polyamide from tau_F = 250 ns for polyamide-6,6 to tau_F = 310 ns for polyamide-6,12 and thus this parameter is always sensitive to the polarity of the medium. We also discuss the advantages of these spectroscopic methodologies that include their applicability to samples without any further sample manipulation and which is independent of their form, powder, pellet or film, and of their thicknesses and sizes.
机译:本文报告了吸附在六种不同聚酰胺表面上的of的静态和动态荧光发射,这些聚酰胺分为两类:AB(聚酰胺6和-11)或AABB(聚酰胺6,6,-6,9,-6, 10和-6,12)。 is是一种众所周知的荧光探针,用于不同介质的极性评估,在弱极性介质中,振动带的强度比(I_1 / I_3)减小,并且单线电子激发态的荧光衰减随极性减小而增加。 polarity的荧光发射的稳态振动比I_1 / I_3随着聚酰胺AB极性的降低而降低,但对于聚酰胺ABB,聚酰胺6.9,9与-6,6相比该比率显着降低,但几乎保持恒定用于聚酰胺6,10和-6,12。这表明pyr的稳态荧光仅对尺寸与分子范德华半径相似的吸附位点的极性敏感。相反,随着聚酰胺极性的降低,荧光衰减从聚酰胺-6,6的tau_F = 250 ns降低到聚酰胺-6,12的tau_F = 310 ns,因此此参数始终对介质的极性敏感。我们还将讨论这些光谱学方法的优点,包括它们无需进一步进行样品处理即可适用于样品的方法,并且与它们的形式,粉末,颗粒或薄膜以及厚度和尺寸无关。

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