Journal of Alloys and Compounds2022,Vol.89811.DOI:10.1016/j.jallcom.2021.162956

(162956)Structural characterization, thermal analysis, electric and dielectric properties of a novel organic-inorganic hybrid compound based on iron fluoride

Afef Moulahi Oussama Guesmi Mohammed S.M. Abdelbaky
Journal of Alloys and Compounds2022,Vol.89811.DOI:10.1016/j.jallcom.2021.162956

(162956)Structural characterization, thermal analysis, electric and dielectric properties of a novel organic-inorganic hybrid compound based on iron fluoride

Afef Moulahi 1Oussama Guesmi 1Mohammed S.M. Abdelbaky2
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作者信息

  • 1. Laboratoire de Chimie Inorganique, Faculte des Sciences de Sfax, Universite de Sfax, 3000 Sfax, Tunisia
  • 2. Departamento de Quimica Fisica y Analitica, Universidad de Oviedo-CINN, 33006 Oviedo, Spain
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Abstract

A novel organic-inorganic hybrid compound based on iron fluoride, formulated as (H_2Piper)_4 [(FeF_6)_2FeF_5(H_20)(H_20)4] (Piper = Piperazine), C1, has been synthesized through hydrothermal method and characterized by X-ray single-crystal diffraction, thermogravimetric analysis (TGA), differential scanning calorimetric (DSC) and dielectric measurements. Single-crystal X-ray study demonstrated that C1 crystallizes in P 1 space group with lattice parameters: a =12.5535(5) A, b =12.8715(4) A, c =22.2774(8) A, a = 92.321(3)°, p = 95.957 (3)°, y = 91.946(3)°, V = 3574.6 A~3 and Z= 4. In the molecular arrangement, [FeF_6]`(3-) and [FeF_5(H_20)]~(2-) anions are connected to [H_2Piper]~(2+) cations and free water molecules through hydrogen bonds (O-H-F and N-H--F) generating 3D network. Thermal analysis (DSC and TG) of C1 confirmed the presence of two phase transitions as well as the temperature of the decomposition of the hybrid material. The complex impedance of C1 was investigated in the temperature range 410-530 K and in the frequency range 200-2.106 Hz. Additionally, an electrical equivalent circuit was reported to explain the impedance results. The variation of the dc and ac conductivity corroborated two phase transitions of the title compound. Furthermore, the frequency dependence of alternative current (ac) conductivity was interpreted in terms of Jonscher's law. The alternative current (ac) electrical conduction in C1 material was accounted for in terms of two processes that can be assigned to the hopping transport mechanism (CBH and NSPT model). The temperature dependences of dielectric permittivity indicated a relaxation process and highlighted the good protonic conduction of this material.

Key words

Organic-inorganic hybrid/Iron fluoride/Hydrogen bond/Phase transition/Complex impedance/Jonscher's law/Conduction

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出版年

2022
Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
被引量5
参考文献量52
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