Hassen S, Chebbi H, Arfaoui Y, Robeyns K, Steenhaut T, Hermans S, Filinchuk Y
University of Tunis El Manar, Faculty of Sciences of Tunis, Laboratory of Characterizations, Applications and Modeling of Materials, 2092 El Manar II, Tunis, Tunisia.
University of Tunis, Preparatory Institute for Engineering Studies of Tunis, Street Jawaher Lel Nehru, 1089 Montfleury, Tunis, Tunisia; University of Tunis El Manar, Faculty of Sciences of Tunis, Laboratory of Materials, Crystal Chemistry and Applied Thermodynamics, 2092 El Manar II, Tunis, Tunisia.
Spectrochim Acta A Mol Biomol Spectrosc. 2020 Oct 15;240:118612. doi: 10.1016/j.saa.2020.118612. Epub 2020 Jun 19.
In this study we present the crystal structure, spectroscopic and thermal behavior, Hirshfeld surface analysis, and DFT calculations of a new organic-inorganic hybrid compound (CHN)[CoCl]. This compound crystallizes in the centrosymmetric space group P1¯. Single-crystal X-ray diffraction analysis indicates that structure consists of a succession of mixed layers formed by organic cations and inorganic anions parallel to the (001) plane and propagate according to the c-axis. Layers further are assembled into a 3D supramolecular architecture through N-HCl hydrogen bonds and ππ interactions. The peak positions of the experimental PXRD pattern are in agreement with the simulated ones from the crystal structure, indicating phase purity of the title compound. The presence of the different functional groups and the nature of their vibrations were identified by ATR-FTIR and FT-Raman spectroscopies. The tetrahedral environment of Co was confirmed by UV-visible spectroscopy, where the spectrum shows three weak absorption bands in the visible range due to d-d electronic transitions A(F) → T(F), A(F) → T(F) and A(F) → T(P) typical of Co(II) coordination compounds. The direct and indirect optical band gap values were determined by Tauc method. The optimized structure and calculated vibrational frequencies were obtained by density functional theory (DFT) using B3LYP functional. TGA and DSC coupled to mass spectrometry (MS) experiments under argon atmosphere in the temperature range (25-950 °C) were carried out in order to determine the thermal stability of the title compound.
在本研究中,我们展示了一种新型有机 - 无机杂化化合物(CHN)[CoCl]的晶体结构、光谱和热行为、 Hirshfeld表面分析以及密度泛函理论(DFT)计算。该化合物结晶于中心对称空间群P1¯。单晶X射线衍射分析表明,其结构由一系列平行于(001)面的有机阳离子和无机阴离子形成的混合层组成,并沿c轴延伸。这些层通过N - HCl氢键和ππ相互作用进一步组装成三维超分子结构。实验PXRD图谱的峰位与晶体结构模拟的峰位一致,表明标题化合物的相纯度。通过ATR - FTIR和FT - Raman光谱确定了不同官能团的存在及其振动性质。通过紫外 - 可见光谱证实了Co的四面体环境,该光谱在可见光范围内显示出三个弱吸收带,这是由于Co(II)配位化合物典型的d - d电子跃迁A(F)→T(F)、A(F)→T(F)和A(F)→T(P)引起的。通过Tauc方法确定了直接和间接光学带隙值。使用B3LYP泛函通过密度泛函理论(DFT)获得了优化结构和计算的振动频率。在氩气气氛下,在温度范围(25 - 950°C)内进行了TGA和DSC与质谱(MS)联用的实验,以确定标题化合物的热稳定性。