REQUIMTE, Departamento de Química e Bioquímica, Faculdade de Ciências, Universidade do Porto, 4169-007 Porto, Portugal.
Dalton Trans. 2013 May 7;42(17):6110-8. doi: 10.1039/c2dt32198j.
In the present work we describe the structure and the spectroscopic characterization of a spirocyclic derivative of a rhodamine B ligand whose properties allow discrimination of light-up effects induced by metal ion chelation and variation of pH. Distinction of the two effects is important for the use of this type of ligand to detect and monitor metal ions in aqueous solutions. The synthesis of the ligand was performed in two steps, which involve the reaction of rhodamine B with hydrazine hydrate to form rhodamine B hydrazide followed by condensation with 2-pyridinecarboxaldehyde and was successfully optimized using a solvent free approach under microwave irradiation. The ligand was obtained in the expected spirolactam form and was characterized in the solid state by EA, MS and single-crystal X-ray diffraction. The ligand was characterized in solution by NMR and absorption and fluorescence spectroscopies and its properties were found to be sensitive to pH and concentration of iron(III). The study of the fluorescence properties at variable pH shows that the compound is fluorescent in the range 2 < pH < 4 with maximum intensity at pH 3 and allowed the determination of two pK(a) values (pK(a1) = 2.98, pK(a2) = 2.89) and establishment of the corresponding distribution diagram. The very low pK(a) values guarantee that above pH equal to 4 the ligand is mostly present in the fully non-protonated and non-fluorescent form L. The study of the interaction of the ligand with iron(iii) was performed in DMSO and DMSO-H(2)O to exclude the influence of pH and due to the low solubility of the compound. The results indicate that the presence of iron(III) triggers the opening of the spirolactam form of the ligand and the maximum intensity obtained at a metal : ligand ratio of 1 : 2 is consistent with the formation of an iron(III) complex with the tridentate ligand.
在本工作中,我们描述了一种罗丹明 B 配体的螺环衍生物的结构和光谱特性,其性质允许区分金属离子螯合和 pH 值变化引起的点亮效应。区分这两种效应对于使用这种配体在水溶液中检测和监测金属离子非常重要。配体的合成分两步进行,涉及罗丹明 B 与水合肼反应形成罗丹明 B 腙,然后与 2-吡啶甲醛缩合,并在微波辐射下成功地通过无溶剂方法进行了优化。配体以预期的螺内酰胺形式获得,并通过 EA、MS 和单晶 X 射线衍射在固态下进行了表征。配体在溶液中通过 NMR 和吸收和荧光光谱进行了表征,其性质对 pH 值和铁(III)浓度敏感。在可变 pH 值下研究荧光性质表明,该化合物在 2 < pH < 4 范围内具有荧光,在 pH 3 时具有最大强度,并允许确定两个 pK(a) 值(pK(a1) = 2.98,pK(a2) = 2.89)和建立相应的分布图。非常低的 pK(a) 值保证了 pH 值大于 4 时,配体主要以完全非质子化和非荧光形式 L 存在。在 DMSO 和 DMSO-H(2)O 中研究配体与铁(III)的相互作用,以排除 pH 值的影响,并且由于化合物的溶解度低。结果表明,铁(III)的存在引发配体螺内酰胺形式的打开,并且在金属:配体比为 1:2 时获得的最大强度与形成具有三齿配体的铁(III)配合物一致。