DocumentCode :
2599636
Title :
Batteries with a mixed pyrophosphates of lead and alkalis in vitreous state for use on storage energies
Author :
Antari, N. ; Benkhouja, K. ; Taibi, M. ; Ouadih ; Arbaoui, A. ; Boughaleb, Y.
fYear :
2008
fDate :
11-13 Dec. 2008
Firstpage :
1
Lastpage :
1
Abstract :
The challenge of this work is to prepare ceramics in the form of powders crystallized type Na2-2xA2xPbP2O7 (A = Li, K, Ag and 0 < x < 1) by the method glass. These different compositions will be characterized by different techniques such as X-ray diffraction, spectroscopy FTIR and thermal analyses ATD, ATG and DSC to determine their local structures. Indeed, the absorption bands appeared in the range of 714 - 970 cm-1 are footprint P2O7 4- groups representing different degrees of freedom from those of PO4 3- and PO3 -. In addition, structures of pyrophosphate joint alkaline and transition element type of symmetry are triclinic. The entity [Pb2P4O14]4- form layers parallel to the plane (001). The sodium atom is located between these two layers. The study of crystal glass composition Na2PbP2O7 at different speeds heating has been undertaken. We evaluated fractions crystallized glass at different temperatures and different speeds. Several models of calculation were applied to determine the activation energy of crystallization of glass diphosphate sodium. The thermal parameters obtained confirm that the crystallisation is predominant two-dimensional. The electrical properties due to the mobility of alkali ions are approached in connection with the structural buildings.
Keywords :
Fourier transform spectra; crystallisation; differential scanning calorimetry; glass ceramics; glass structure; infrared spectra; ion mobility; ionic conductivity; lithium compounds; materials preparation; potassium compounds; powder technology; powders; secondary cells; silver compounds; sodium compounds; vitreous state; ATD; ATG; DSC; FTIR spectroscopy; Na2-2xAg2xPbP2O7; Na2-2xK2xPbP2O7; Na2-2xLi2xPbP2O7; X-ray diffraction; absorption band; activation energy; alkali pyrophosphate; battery; ceramic powder; crystal glass composition; crystallization; degrees of freedom; diphosphate sodium glass; electrical property; glass method; heating; ion mobility; lead pyrophosphate; local structure; storage energy; thermal analysis; thermal parameters; triclinic symmetry; vitreous state; Batteries; Ceramics; Crystallization; Electromagnetic wave absorption; Energy storage; Glass; Lead; Powders; Spectroscopy; X-ray diffraction;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Mediterranean Winter, 2008. ICTON-MW 2008. 2nd ICTON
Conference_Location :
Marrakech
Print_ISBN :
978-1-4244-3484-8
Electronic_ISBN :
978-1-4244-3485-5
Type :
conf
DOI :
10.1109/ICTONMW.2008.4773101
Filename :
4773101
Link To Document :
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