Your browser doesn't support javascript.
loading
Synthesis of a new potassium-substituted lead fluorapatite and its structural characterization.
Hamza, Mariam; Hamdi, Besma; Ben Ahmed, Ali; Capitelli, Francesco; El Feki, Hafed.
Afiliação
  • Hamza M; University of Sfax, Faculty of Sciences of Sfax, Laboratory of Materials Science and Environment P. B. No. 1171-3000 Sfax Tunisia.
  • Hamdi B; University of Sfax, Faculty of Sciences of Sfax, Laboratory of Materials Science and Environment P. B. No. 1171-3000 Sfax Tunisia.
  • Ben Ahmed A; University of Sfax, Faculty of Sciences of Sfax, Department of Physic, Laboratory of Applied Physic B. P. No. 802 3018 Sfax Tunisia.
  • Capitelli F; Institute of Crystallography-CNR Via Salaria Km 29.300 00016 Monterotondo Rome Italy francesco.capitelli@cnr.it.
  • El Feki H; University of Sfax, Faculty of Sciences of Sfax, Laboratory of Materials Science and Environment P. B. No. 1171-3000 Sfax Tunisia.
RSC Adv ; 14(24): 16876-16885, 2024 May 22.
Article em En | MEDLINE | ID: mdl-38799221
ABSTRACT
Prismatic crystals of partially potassium substituted lead fluorapatite Pb5.09Ca3.78K1.13(PO4)6F0.87 were grown through a solid-state reaction. The structural study conducted by single-crystal X-ray diffraction revealed that the compound crystallizes in the hexagonal P63/m space group, with unit cell parameters a = b = 9.7190(5) Å, c = 7.1700(6) Å and V = 587.37(7) Å3(Z = 1), as well as final values amounting to R and wR of 0.0309 and 0.0546, respectively. The structural refinement demonstrated that Pb occupies both the (6h) and (4f) structural sites of hexagonal fluorapatite, K occupies the (6h) site, and Ca is placed on the (4f) site. Powder X-ray diffraction study indicated the absence of additional phases or impurities. Chemical analysis using atomic absorption spectrometry and energy-dispersive X-ray spectroscopy confirmed the expected chemical formula. The electrical conductivity measured over a wide temperature range was found to be governed by the ion mobility mechanism in the tunnel along the c axis (probably attributed to the fluorine ion located there). We, therefore, could infer from the analysis of the complex impedance spectra that the electrical conductivity of our apatite depends essentially on the temperature and frequency, which produces a relaxation phenomenon and semiconductor-like behavior. Moreover, the strong absorption in the UV-Visible region was substantiated through studies of the optical properties of the developed sample. Fluorescence spectra exhibited emissions in the orange regions when excited at 375 nm. The findings of the phenomena resulting from the emission and conduction of the apatite in question suggest its potential for application in various technological fields such as photovoltaic cells, optoelectronics, photonics, LED applications, catalysis and batteries.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: RSC Adv Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: RSC Adv Ano de publicação: 2024 Tipo de documento: Article