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5-芳基乙烯基-5'-甲基-2,2'-联吡啶配体及其锌配合物的荧光性质。

Fluorescence of 5-arylvinyl-5'-methyl-2,2'-bipyridyl ligands and their zinc complexes.

机构信息

Department of Chemistry and Biochemistry, Florida State University, Tallahassee, Florida 32306-4390, USA.

出版信息

J Org Chem. 2009 Nov 20;74(22):8761-72. doi: 10.1021/jo901889y.

Abstract

The photophysical properties of 5-arylvinyl-5'-methyl-2,2'-bipyridyls (AVMBs, 1-9, 11) and their zinc complexes were studied. Similar 2,2'-bipyridyl-based ligands have been applied as optical sensors for metal ions and sensitizers for solar energy conversion. The goal of this investigation is to reveal the factors that determine the emission band shift and fluorescence quantum yield change of the title ligand system upon zinc binding. The outcome of this study will not only advance the fundamental understanding of the coordination-driven photophysical processes embodied in the AVMB platform but facilitate the rational design of fluorescent probes for metal ions, particularly zinc. The AVMB ligands were synthesized using the Horner-Wadsworth-Emmons reaction. AVMBs containing electron-donating aryl groups show absorption and emission in the visible region, which can be assigned to charge-transfer transitions as supported by solvent-dependency and computational studies. The binding between AVMB ligands and zinc ion in acetonitrile was studied using isothermal titration calorimetry (ITC). A multicomponent equilibrium model is suggested that explains the multiple transitions evidenced in fluorescence titration isotherms. Coordination to zinc ion stabilizes the charge-transfer excited state of an AVMB ligand with an electron-donating aryl substituent, consequently results in bathochromic shifts in both absorption and emission. However, unlike the emission band shift, the fluorescence quantum yield change upon zinc complex formation does not have an intuitive correlation with the electronic nature of the aryl group. Lifetime measurements using the Time-Correlated Single Photon Counting method enabled the determination of nonradiative and radiative decay rate constants. Both rates of an AVMB ligand decrease upon zinc binding. The collective effect gives rise to the change in fluorescence quantum yield with the apparent lack of correlation with the electronic property of the aryl group.

摘要

本文研究了 5-芳基乙烯基-5'-甲基-2,2'-联吡啶(AVMBs,1-9,11)及其锌配合物的光物理性质。类似的基于 2,2'-联吡啶的配体已被应用于金属离子的光学传感器和太阳能转换的敏化剂。本研究的目的是揭示决定标题配体体系在锌结合时发射带位移和荧光量子产率变化的因素。该研究的结果不仅将推进 AVMB 平台所体现的配位驱动光物理过程的基本理解,还将促进用于金属离子,特别是锌的荧光探针的合理设计。AVMB 配体是通过 Horner-Wadsworth-Emmons 反应合成的。含供电子芳基的 AVMBs 在可见区域显示出吸收和发射,这可以归因于电荷转移跃迁,溶剂依赖性和计算研究对此提供了支持。使用等温滴定量热法(ITC)研究了 AVMB 配体与锌离子在乙腈中的结合。提出了一个多组分平衡模型,该模型解释了荧光滴定等谱中证明的多个跃迁。与锌离子配位稳定了具有供电子芳基取代基的 AVMB 配体的电荷转移激发态,因此导致吸收和发射都发生红移。然而,与发射带位移不同,锌配合物形成时荧光量子产率的变化与芳基的电子性质没有直观的相关性。使用时间相关单光子计数法进行的寿命测量使确定非辐射和辐射衰减速率常数成为可能。AVMB 配体与锌结合后,这两个速率均降低。集体效应导致荧光量子产率的变化,而与芳基的电子性质明显缺乏相关性。

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