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O,N,N 配位配体及其中性 Zn(ii)配合物的合成、结构和光谱性质:实验与理论研究的结合。

Synthesis, structure and spectral properties of O,N,N coordinating ligands and their neutral Zn(ii) complexes: a combined experimental and theoretical study.

机构信息

Inorganic Chemistry Section, Department of Chemistry, Jadavpur University, Kolkata, 700 032, India.

出版信息

Dalton Trans. 2013 Oct 1;42(41):14905-15. doi: 10.1039/c3dt51571k.

Abstract

Mononuclear Zn(ii) complexes with the general formula [Zn(L)2] have been synthesized in good yields by reacting Zn(OAc)2 with HL in a ratio of 1 : 2 in methanol solvent. Here L is the deprotonated form of 6-[(quinolin-8-ylamino)methylene]cyclohexa-2,4-dienone (HL(1)), 4-chloro-6-[(quinolin-8-ylamino)methylene]cyclohexa-2,4-dienone (HL(2)), 4-methyl-6-[(quinolin-8-ylamino)methylene]cyclohexa-2,4-dienone (HL(3)), 2,4-dimethyl-6-[(quinolin-8-ylamino) methylene]cyclohexa-2,4-dienone (HL(4)), 2-methoxy-6-[(quinolin-8-ylamino) methylene]cyclohexa-2,4-dienone (HL(5)). The electronic structures and photophysical properties of the ligands were calculated by DFT and TDDFT methods. The X-ray structure of one complex is reported. The ligands have a strong binding ability [(0.75-15.37) × 10(4)] and ratiometric response to Zn(2+) ions. With the addition of Zn(2+) ions to the ligands in THF solution a sharp color change is observed visually, and as well a significant enhancement of the fluorescence intensity and the quantum yield for this series occurs. The introduction of other metal ions having biological and environmental effects results in either unaltered or quenched emission intensity. However we observed the sensing property of the ligands strongly depends on the substituent at the ortho position of the phenol group. DFT calculation reveals that the ICT process take place from the salicylaldehyde (donor moiety) to quinoline (acceptor moiety) which is responsible for the enhancement of the fluorescence intensity of ligands after complexation.

摘要

单核锌(II)配合物[Zn(L)2]通过在甲醇溶剂中以 1:2 的比例使 Zn(OAc)2与 HL 反应以高产率合成。这里 L 是 6-[(喹啉-8-基氨基)亚甲基]环己-2,4-二烯酮(HL(1))、4-氯-6-[(喹啉-8-基氨基)亚甲基]环己-2,4-二烯酮(HL(2))、4-甲基-6-[(喹啉-8-基氨基)亚甲基]环己-2,4-二烯酮(HL(3))、2,4-二甲基-6-[(喹啉-8-基氨基)亚甲基]环己-2,4-二烯酮(HL(4))、2-甲氧基-6-[(喹啉-8-基氨基)亚甲基]环己-2,4-二烯酮(HL(5))的去质子形式。配体的电子结构和光物理性质通过 DFT 和 TDDFT 方法进行了计算。报道了一个配合物的 X 射线结构。配体对 Zn(2+)离子具有很强的结合能力[(0.75-15.37)×10(4)]和比率响应。向 THF 溶液中的配体中加入 Zn(2+)离子,观察到肉眼可见的明显颜色变化,以及该系列荧光强度和量子产率的显著增强。向配体中引入具有生物和环境效应的其他金属离子会导致发射强度不变或猝灭。然而,我们观察到配体的传感性能强烈依赖于酚基邻位的取代基。DFT 计算表明,ICT 过程发生在水杨醛(供体部分)到喹啉(受体部分),这是配体络合后荧光强度增强的原因。

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