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Determination of sotalol by fluorescence quenching method

机译:荧光猝灭法测定索他洛尔

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Sotalol has a weak fluorescence in aqueous solutions, so using a direct fluorescent method is difficult. The competitive reaction between sotalol and palmatine for occupancy of the cucurbit[7]uril (CB[7]) cavity was studied by spectrofluorimetry. CB[7] reacts with palmatine to form complexes with strong fluorescence. However, the presence of sotalol quenches the fluorescence intensity of the complexes. We attribute this to the competition between sotalol and palmatine for occupation of the CB[7] hydrophobic cavity. Results show that sotalol occupies the space within the CB[7] cavity, forcing palmatine molecules to reside in the aqueous environment. The quenching of the CB[7]/palmatine system is fast, and the degree of quenching is proportional to the concentration of sotalol. Therefore, a new and useful spectrofluorimetric method with high sensitivity and selectivity was developed for the determination of sotalol in aqueous solutions. The proposed method is fairly accurate, simple, rapid, reproducible, and sensitive. It is also specific for the identification of sotalol. Its detection limit is 0.033 μg mL~(-1). This paper also discusses the competition reaction mechanism between sotalol and palmatine in the CB[7] cavity.
机译:索他洛尔在水溶液中的荧光较弱,因此难以使用直接荧光法。用荧光光谱法研究了瓜酚和棕榈碱对葫芦[7]尿素(CB [7])腔的占据的竞争反应。 CB [7]与棕榈碱反应形成具有强荧光的复合物。然而,索他洛尔的存在淬灭了复合物的荧光强度。我们将其归因于索他洛尔和棕榈碱之间对占领CB [7]疏水腔的竞争。结果表明,索他洛尔占据了CB [7]腔内的空间,迫使棕榈蛋白分子驻留在水性环境中。 CB [7] /巴马汀系统的淬灭速度很快,淬灭程度与索他洛尔的浓度成正比。因此,开发了一种新的,有用的具有高灵敏度和选择性的荧光光谱法,用于测定水溶液中的索他洛尔。所提出的方法相当准确,简单,快速,可重现和灵敏。它也特定于索他洛尔的鉴定。其检出限为0.033μgmL〜(-1)。本文还讨论了CB [7]腔中索他洛尔和棕榈碱之间的竞争反应机理。

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