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锌(II) 4-氯苯乙酸的 4-吡啶甲酰胺的合成及晶体学、吸收和发射研究。

Synthesis and Crystallographic, Absorption and Emission Studies of 4-Pyridine Carboxamide of Zn(II) 4-Chlorophenylacetate.

机构信息

Department of Chemical Engineering, Kafkas University, 36100, Kars, Turkey.

Department of Electrical and Electronic Engineering, Kafkas University, 36100, Kars, Turkey.

出版信息

J Fluoresc. 2019 Sep;29(5):1265-1275. doi: 10.1007/s10895-019-02440-x. Epub 2019 Oct 23.

Abstract

A new zinc(II) complex, [Zn(CB)(INA)] (where CB is 4-chlorophenylacetate and INA is 4-pyridine carboxamide) was synthesized. The structure of the complex was characterized by elemental analysis, FT-IR spectroscopy and single-crystal X-ray diffraction technique. Besides, the thermal stability of the complex was investigated by TGA/DTA analysis method. Moreover, the optical absorption and the emission features of the complex were examined by using UV-Vis and fluorescence spectrophotometers, respectively. Furthermore, Density Functional Theory (DFT) calculations were carried out to support the experimental results. Accordingly, it was determined that the complex crystallized in a monoclinic system with space group Pc, a = 8.3329 (2) Å, b = 25.6530 (4) Å, c = 13.5048 (3) Å, α = 90°, β = 91.703 (3)° and γ = 90°. The complex consists two crystallographically independent molecules. In each molecule, the Zn ion adopts a distorted trigonal pyramidal coordination formed by two O atoms from the two 4 chlorophenylacetate ligand and two N atoms of the two 4-pyridine carboxamide ligands. It was observed that the linear absorption spectra of the complex were similar to linear absorption spectra of the semiconductors. In addition, two emission peaks were observed in the fluorescence spectra which could be due to the formation of excimer and the interactions of the benzene and pyridine rings. The energy gap (ΔE = E - E) of the complex has been calculated as 3.712 eV and this value is very close to the experimentally measured value (3.86 eV). Therefore, because of higher fluorescence intensity of emission peak that was observed between 309 and 556 nm wavelength besides other traits, the complex could potentially be used in the blue light OLED application by filtering of the emission peak around 710 nm wavelength. Graphical Abstract It was reported synthesis and spectroscopic, structural and optical characterization of a new complex that is Zn(II) of 4-Chlorophenylacetate with isonicotinamide. The complex characterized by elemental analysis, Single crystal X-ray diffraction and FT-IR Spectroscopy. Thermal stabilities of the complex have also been investigated. The studying of the optical absorption and fluorescence spectra of the prepared complex is very important for the determination of the optical application areas. The fluorescence measurements showed that these materials are much suitable for application area of the detection of nitroaromatic explosives. In addition to the Density Functional Theory (DFT) calculations were carried out to support the experimental results. It was reported synthesis and spectroscopic, structural and optical characterization of a new complex that is Zn(II) of 4-Chlorophenylacetate with isonicotinamide. The complex characterized by elemental analysis, Single crystal X-ray diffraction and FT-IR Spectroscopy. Thermal stabilities of the complex have also been investigated. The studying of the optical absorption and fluorescence spectra of the prepared complex is very important for the determination of the optical application areas. In addition to the Density Functional Theory (DFT) calculations were carried out to support the experimental results.

摘要

一种新的锌(II)配合物,[Zn(CB)(INA)](其中 CB 是 4-氯苯乙酸盐,INA 是 4-吡啶甲酰胺)被合成。通过元素分析、FT-IR 光谱和单晶 X 射线衍射技术对配合物的结构进行了表征。此外,还通过 TGA/DTA 分析方法研究了配合物的热稳定性。此外,还使用紫外可见分光光度计和荧光分光光度计分别研究了配合物的光吸收和发光特性。此外,还进行了密度泛函理论(DFT)计算以支持实验结果。因此,确定该配合物在单斜晶系的空间群 Pc 中结晶,a=8.3329(2)Å,b=25.6530(4)Å,c=13.5048(3)Å,α=90°,β=91.703(3)°和γ=90°。该配合物由两个结晶学上独立的分子组成。在每个分子中,Zn 离子采用由两个来自两个 4-氯苯乙酸盐配体的 O 原子和两个来自两个 4-吡啶甲酰胺配体的 N 原子形成的扭曲三角锥形配位。观察到配合物的线性吸收光谱类似于半导体的线性吸收光谱。此外,在荧光光谱中观察到两个发射峰,这可能是由于形成激基和苯环与吡啶环的相互作用。配合物的能隙(ΔE=E-E)计算为 3.712 eV,该值非常接近实验测量值(3.86 eV)。因此,由于在 309nm 至 556nm 波长范围内观察到的发射峰的荧光强度较高,以及其他特性,该配合物可能在通过过滤 710nm 波长左右的发射峰来应用于蓝光 OLED 方面具有潜力。

图形摘要

报道了一种新型配合物的合成及光谱、结构和光学特性,该配合物是 4-氯苯乙酸盐与异烟酰胺的锌(II)。通过元素分析、单晶 X 射线衍射和 FT-IR 光谱对配合物进行了表征。还研究了配合物的热稳定性。研究制备配合物的光吸收和荧光光谱对于确定光学应用领域非常重要。荧光测量表明,这些材料非常适合用于检测硝基芳香族爆炸物的应用领域。此外,还进行了密度泛函理论(DFT)计算以支持实验结果。报道了一种新型配合物的合成及光谱、结构和光学特性,该配合物是 4-氯苯乙酸盐与异烟酰胺的锌(II)。通过元素分析、单晶 X 射线衍射和 FT-IR 光谱对配合物进行了表征。还研究了配合物的热稳定性。研究制备配合物的光吸收和荧光光谱对于确定光学应用领域非常重要。此外,还进行了密度泛函理论(DFT)计算以支持实验结果。

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