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首页> 外文期刊>Sensors and Actuators >Solvatochromic isocyanonaphthalene dyes as ligands for silver(Ⅰ) complexes, their applicability in silver(Ⅰ) detection and background reduction in biolabelling
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Solvatochromic isocyanonaphthalene dyes as ligands for silver(Ⅰ) complexes, their applicability in silver(Ⅰ) detection and background reduction in biolabelling

机译:溶剂变色异氰基萘染料作为银(Ⅰ)配合物的配体,在银(Ⅰ)检测中的适用性和生物标记的背景降低

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The complexation behavior of reactive and nonreactive N-substituted 1-amino-5-isocyanonaphthalene (ICAN) derivatives was studied in the presence of Ag(I) ions by UV-vis, steady-state and time resolved fluorescence measurements. The effect of ligand, solvent and counterion is covered. The equilibrium constants were found to be K-Agt similar to 10(6) M-1 in dioxane and water. Complex formation results a significant, solvent dependent (30-59 nm) batochromic shift of the emission maximum. This shift is accompanied by a switch-off effect in the case of the unreactive ligands, while in the case of the acrylated derivative (ACAIN) significant intensity enhancement was detected. Based on spectroscopic results only 1:1 AgL complex could be detected in solution at low concentrations c(AgL) < 10(-4) M, while at higher concentrations pure 1:2 AgL2 formed which was characterized by ESI-MS, IR and NMR methods The structure and optical behavior of the complexes are discussed based on high-level quantum chemical calculations. It is shown that the complexation of ACAIN can be used for the selective detection and quantification of silver(I) ions from aqueous media. In addition, the fluorescene switch-off in the case of MICAN yields a significant contrast enhancement in biolabeling applications as is shown on fixated HaCat cells.s (C) 2017 Elsevier B.V. All rights reserved.
机译:通过紫外可见,稳态和时间分辨荧光测量研究了在Ag(I)离子存在下反应性和非反应性N-取代的1-氨基-5-异氰基萘(ICAN)衍生物的络合行为。涵盖了配体,溶剂和抗衡离子的作用。发现在二恶烷和水中的平衡常数为K-Agt,与10(6)M-1相似。配合物的形成导致发射最大值发生显着的溶剂依赖性(30-59 nm)变色位移。在非反应性配体的情况下,该偏移伴随有关断效应,而在丙烯酸酯衍生物(ACAIN)的情况下,检测到明显的强度增强。根据光谱结果,在低浓度c(AgL)<10(-4)M时,溶液中只能检测到1:1 AgL复合物,而在较高浓度下,可以形成纯的1:2 AgL2,其特征在于ESI-MS,IR和NMR方法基于高级量子化学计算,讨论了配合物的结构和光学行为。结果表明,ACAIN络合物可用于选择性检测和定量测定水性介质中的银(I)离子。此外,在MICAN情况下关闭荧光灯会在生物标记应用中显着增强对比度,如固定的HaCat细胞上所示(s)(C)2017 Elsevier B.V.保留所有权利。

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