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一种新型混合化合物(CHN)ZnCl·2Cl的表征:X射线结构、 Hirshfeld表面、振动、热稳定性、介电弛豫和电导率

Characterization of a New Hybrid Compound (CHN)ZnCl·2Cl: X-ray Structure, Hirshfeld Surface, Vibrational, Thermal Stability, Dielectric Relaxation, and Electrical Conductivity.

作者信息

Zaghden Sahar, Ben Attia Hadhemi, Abdelbaky Mohammed S M, Oueslati Abderrazek, García-Granda Santiago, Dammak Mohamed, Ktari Lilia

机构信息

Laboratory of Inorganic Chemistry (LCI) LR17ES07, Faculty of Sciences of Sfax, University of Sfax, 3000 Sfax, Tunisia.

Department of Physical and Analytical Chemistry, Oviedo University-CINN, 33006 Oviedo, Spain.

出版信息

ACS Omega. 2024 Nov 20;9(48):47597-47612. doi: 10.1021/acsomega.4c06685. eCollection 2024 Dec 3.

Abstract

A novel organic-inorganic material (CHN)ZnCl·2Cl was synthesized via a slow evaporation approach and subjected to extensive characterization. Techniques involving X-ray diffraction, SEM/EDX, Hirshfeld surface examination, IR/Raman spectroscopy, thermal behavior (TG/DTG/SDTA and DSC), and electric and dielectric studies were applied. Examination of the crystal structure reveals that the synthesized material adopts a monoclinic system, particularly belonging to the 2/ space group with unit cell parameters = 11.7274(3) Å, = 6.2155(2) Å, = 25.7877(8) Å, β = 94.27(1)°, = 1874.50(4) Å, and = 4. Purity confirmation was established via powder X-ray diffraction analysis. Composition verification was conducted using semiquantitative EDXS analysis. The asymmetric unit comprises isolated tetrachlorozincate [ZnCl] anions, two (CHN) organic cations, and two free chlorine atoms, forming a 0D anionic network. N-H···Cl and N-H···N hydrogen bonding combined to form a 2D hydrogen-bonded network, maintaining crystal stability. Hirshfeld surface analysis elucidated intermolecular interactions, supported by 2D fingerprint plots. IR and Raman spectra analysis corroborated compound characteristics at room temperature. Thermal analysis revealed two phase transitions at 343 and 358 K, consistent with dielectric studies. Impedance spectroscopy highlighted the compound's electrical properties, confirming thermal transitions. Conductivity studies exhibited an Arrhenius behavior. Frequency-dependent dielectric constant variations and modulus studies underscored grain and grain boundary effects, confirming the effective protonic conduction in the material.

摘要

通过缓慢蒸发法合成了一种新型有机-无机材料(CHN)ZnCl·2Cl,并对其进行了广泛表征。应用了X射线衍射、扫描电子显微镜/能谱仪(SEM/EDX)、 Hirshfeld表面检测、红外/拉曼光谱、热行为分析(TG/DTG/SDTA和DSC)以及电学和介电研究等技术。晶体结构研究表明,合成材料属于单斜晶系,具体属于2/空间群,晶胞参数为 = 11.7274(3) Å, = 6.2155(2) Å, = 25.7877(8) Å,β = 94.27(1)°, = 1874.50(4) Å,且 = 4。通过粉末X射线衍射分析确定了纯度。使用半定量EDXS分析进行了成分验证。不对称单元包含孤立的四氯锌酸根[ZnCl]阴离子、两个(CHN)有机阳离子和两个游离氯原子,形成了一个0D阴离子网络。N-H···Cl和N-H···N氢键结合形成二维氢键网络,维持晶体稳定性。Hirshfeld表面分析阐明了分子间相互作用,二维指纹图谱提供了支持。红外和拉曼光谱分析证实了该化合物在室温下的特性。热分析显示在343和358 K处有两个相变,这与介电研究结果一致。阻抗谱突出了该化合物的电学性质,证实了热转变。电导率研究表现出阿伦尼乌斯行为。频率依赖性介电常数变化和模量研究强调了晶粒和晶界效应,证实了材料中有效的质子传导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b841/11618442/16fa8f712592/ao4c06685_0001.jpg

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