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首页> 外文期刊>Optics and Spectroscopy >Luminescence of Nile Red as Indicator of Composition of Nanoparticles from Diketonate Complexes of Trivalent Metals
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Luminescence of Nile Red as Indicator of Composition of Nanoparticles from Diketonate Complexes of Trivalent Metals

机译:尼罗红的发光作为三价金属二酮酸酯络合物纳米颗粒组成的指示剂

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We study the sensitization of fluorescence of Nile red in nanoparticles formed in aqueous solutions of complexes of Al, In, Sc, and Lu with DBM, DBM, and phen and of complexes of In with MBTA and phen. We show that, at concentrations of Nile red of 2-50 nM and complexes of 10-30 (mu)M, the fluorescence intensity of Nile red in aqueous solutions increases by 1.5-2 orders of magnitude compared to its fluorescence in H_(2)O. We find that, at these concentrations of Nile red in solutions of complexes Al, the dye is completely contained in nanoparticles from these complexes. We show that Nile red molecules are inhomogeneously distributed in nanoparticles from complexes and, upon the completion of the formation of nanoparticles, dye molecules tend to be localized in regions of nanoparticles formed from diketonate complexes M(diketone)_(3)phen (M is Lu or In) and Al(DBM)_(3). Upon the localization of Nile red in these regions, the maximum of its fluorescence spectrum shifts toward approx600 nm and, upon the penetration of Nile red into nanoparticles from Sc complexes, the shift of the maximum of its fluorescence spectrum compared to the spectrum in water does not exceed 10 nm. The shifts of the spectra are collated with the ability of ions to form diketonate and hydroxy diketonate complexes. We demonstrate that the fluorescence of Nile red is efficiently sensitized, not only upon its penetration into nanoparticles formed from complexes, but also upon its adsorption on the nanopar-ticle surface when Nile red molecules are introduced in solutions of already formed nanoparticles.
机译:我们研究了在Al,In,Sc和Lu与DBM,DBM和phen的配合物以及In与MBTA和phen的配合物的水溶液中形成的纳米颗粒中尼罗红荧光的敏化作用。我们显示,在2-50 nM的尼罗红浓度和10-30μM的配合物浓度下,与其在H_(2)中的荧光相比,水溶液中尼罗红的荧光强度增加了1.5-2个数量级。 O.我们发现,在配合物Al的这些浓度的尼罗红浓度下,染料完全包含在这些配合物的纳米粒子中。我们显示尼罗红分子不均匀地分布在复合物中的纳米颗粒中,并且在纳米颗粒形成完成后,染料分子倾向于定位在由二酮酮复合物M(二酮)_(3)phen(M为Lu或In)和Al(DBM)_(3)。尼罗红在这些区域中定位后,其荧光光谱的最大值移向约600 nm,并且,当尼罗红渗透到Sc络合物中的纳米颗粒中时,其荧光光谱的最大值与水中的光谱相比发生了移动不超过10 nm。光谱的变化与离子形成二酮和羟基二酮配合物的能力有关。我们证明尼罗红的荧光不仅在其渗透到由复合物形成的纳米颗粒中时,而且在将尼罗红分子引入已经形成的纳米颗粒的溶液中时在纳米粒子表面上的吸附上,都得到了有效的增感。

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