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双(吡唑基)吡啶衍生物的功能分子体系:光物理、光谱学、计算及离子传感

Functional Molecular System of Bis(pyrazolyl)pyridine Derivatives: Photophysics, Spectroscopy, Computation, and Ion Sensing.

作者信息

Naik Indravath K, Bodapati Ramakrishna, Sarkar Rudraditya, Mondal Navendu, Das Samar K

机构信息

School of Chemistry, University of Hyderabad, Hyderabad 500 046, India.

出版信息

ACS Omega. 2018 Mar 13;3(3):3022-3035. doi: 10.1021/acsomega.7b02006. eCollection 2018 Mar 31.

Abstract

A new series of conjugated donor-π-acceptor type of 2,6-bis(pyrazolyl)pyridine derivatives (compounds ) have been synthesized via Horner-Wadsworth-Emmons (HWE) reaction, starting from a common phosphonate precursor and diverse donor aromatic aldehydes and characterized by routine spectral analysis including elemental analysis. Compound , one of the starting precursors, and molecule , the first member of the donor-π-acceptor series, are additionally characterized by single-crystal X-ray structure determination. Compounds and are crystallized in 1̅ (triclinic) and 2/ (monoclinic) space groups, respectively. The absorption maxima in the electronic spectra of the title compounds shift mainly due to intramolecular charge transfer (ICT) between different donor (dibutyl and cyclic pyrrolidine) groups and the acceptor moiety [2,6-bis(pyrazolyl) pyridine]. Solution-state emission spectral studies of all these compounds show large solvent sensitive behavior with significant amounts of Stokes shifts. The large solvent dependence of the emission indicates that the excited state is stabilized in more polar solvents due to the ICT. All chromophores exhibit solid-state fluorescence behavior except compound . The role of the position and nature of the donor functionalities in the conjugated backbone of overall donor moiety of compounds , on the electronic absorption properties of the title chromophores has been demonstrated, which has further been corroborated by density functional theory (DFT) and time-dependent DFT (TDDFT) computational studies. The emission spectral results of compounds , , and have also been supported by the DFT and TDDFT calculations. A fluorescence lifetime study on this series also shows that the excited states are stabilized in more polar solvents. Finally, one of the chromophores (chromophore ) in the title series has been shown to act as a selective molecular sensor (turn-off switch) for the Cu(II) ion.

摘要

通过霍纳-沃兹沃思-埃蒙斯(HWE)反应,从一种常见的膦酸酯前体和多种供体芳香醛出发,合成了一系列新的共轭供体-π-受体型2,6-双(吡唑基)吡啶衍生物(化合物),并通过包括元素分析在内的常规光谱分析进行了表征。起始前体之一的化合物和供体-π-受体系列的首个成员分子,还通过单晶X射线结构测定进行了表征。化合物和分别在1̅(三斜晶系)和2/(单斜晶系)空间群中结晶。标题化合物电子光谱中的吸收最大值主要由于不同供体(二丁基和环吡咯烷)基团与受体部分[2,6-双(吡唑基)吡啶]之间的分子内电荷转移(ICT)而发生位移。所有这些化合物的溶液态发射光谱研究表明,它们具有很大的溶剂敏感行为,斯托克斯位移量很大。发射对溶剂的强烈依赖性表明,由于ICT,激发态在极性更强的溶剂中更稳定。除化合物外,所有发色团均表现出固态荧光行为。已经证明了化合物整体供体部分共轭主链中供体官能团的位置和性质对标题发色团电子吸收性质的作用,密度泛函理论(DFT)和含时DFT(TDDFT)计算研究进一步证实了这一点。化合物、和的发射光谱结果也得到了DFT和TDDFT计算的支持。对该系列的荧光寿命研究还表明,激发态在极性更强的溶剂中更稳定。最后,标题系列中的一种发色团(发色团)已被证明可作为铜(II)离子的选择性分子传感器(关闭开关)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c4a/6641288/cf350b6569bc/ao-2017-02006v_0001.jpg

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