Structural and lithium intercalation studies of Mn(0.5-x)CaxTi2(PO4)3 phases (0≤x≤0.50)

被引:51
作者
Aatiq, A
Ménétrier, M
El Jazouli, A
Delmas, C
机构
[1] CNRS, Inst Chim Mat Condensee, F-33608 Pessac, France
[2] Ecole Natl Super Chim & Phys Bordeaux, F-33608 Pessac, France
[3] Fac Sci Ben MSik, Lab Chim Mat Solides, Casablanca, Morocco
关键词
Mn(0.5-x)CaxTi2(PO4)(3) phases; electrochemical lithium intercalation; NMR spectroscopy; X-ray diffraction analysis;
D O I
10.1016/S0167-2738(02)00135-2
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Materials from the Mn(0.5-x)CaxTi2(PO4)(3) (0less than or equal toxless than or equal to0.50) solid solution were obtained by solid-state reaction in air at 1000 degreesC. Selected compositions were investigated by powder X-ray diffraction analysis, P-31 nuclear magnetic resonance (NMR) spectroscopy and electrochemical lithium intercalation. The structure of all samples determined by Rietveld analysis is of the Nasicon type with the R (3) over bar space group. Mn2+/Ca2+ ions occupy only the M1 sites in the Ti-2(PO4)(3) framework. The divalent cations are ordered in one of two M1 sites, except for the Mn0.50Ti2(PO4)(3) phase, where a small departure from the ideal order is observed by XRD and P-31 MAS NMR. The electrochemical behaviour of Mn0.50Ti2(PO4)(3) and Mn(0.5-x)CaxTi2(PO4)(3) phases was characterised in Li cells. Two Li ions can be inserted without altering the Ti-2(PO4)(3) framework. In the 0 less than or equal to y less than or equal to 2 range, the OCV curves of Li//LiyMn0.50Ti2(PO4)(3) cells show two main potential plateaus at 2.90 and 2.50-2.30 V Comparison between the OCV curves of Li//Li(1 + y)Ti2(PO4)(3) and Li//LiyMn0.50Ti2(PO4)(3) shows that the intercalation occurs first in the unoccupied M1 site of Mn0.50Ti2(PO4)(3) at 2.90 V and then, for compositions y>0.50, at the M2 site (2.50-2.30 V voltage range). The effect of calcium substitution in Mn0.50Ti2(PO4)(3) On the lithium intercalation is also discussed from a structural and kinetic viewpoint. In all systems, the lithium intercalation is associated with a redistribution of the divalent cation over all MI sites. In the case of Mn0.50Ti2(PO4)(3), the stability of Mn2+ either in an octahedral or tetrahedral environment facilitates cationic migration. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:391 / 405
页数:15
相关论文
共 32 条
[1]   Structure and electrochemical study of Li2xMn(1-x)TiCr(PO4)3 (x = 0-0.50) with Nasicon-like structure [J].
Aatiq, A ;
Delmas, C ;
El Jazouli, A ;
Gravereau, P .
ANNALES DE CHIMIE-SCIENCE DES MATERIAUX, 1998, 23 (1-2) :121-124
[2]   Structural and electrochemical study of Li0.5Mn0.5Ti1.5Cr0.5(PO4)3 [J].
Aatiq, A ;
Delmas, C ;
El Jazouli, A .
JOURNAL OF SOLID STATE CHEMISTRY, 2001, 158 (02) :169-174
[3]  
AATIQ A, UNPUB J MAT CHEM
[4]  
AATIQ A, 1997, THESIS FS BEN MSIK C
[5]   RELATION STRUCTURE FAST ION CONDUCTION IN THE NASICON SOLID-SOLUTION [J].
BOILOT, JP ;
COLLIN, G ;
COLOMBAN, P .
JOURNAL OF SOLID STATE CHEMISTRY, 1988, 73 (01) :160-171
[6]   LI INTERCALATION IN CU0.5IITI2(PO4)3) - A NEUTRON-DIFFRACTION STUDY OF LI3.5CU0.5TI2(PO4)3 [J].
BOIREAU, A ;
SOUBEYROUX, JL ;
OLAZCUAGA, R ;
DELMAS, C ;
LEFLEM, G .
SOLID STATE IONICS, 1993, 63-5 :484-487
[7]   CRYSTAL-CHEMISTRY AND IONIC-CONDUCTIVITY OF A NEW NASICON-RELATED SOLID-SOLUTION NA1+XZR2-X/2MGX/2(PO4)3 [J].
CHERKAOUI, F ;
VIALA, JC ;
DELMAS, C ;
HAGENMULLER, P .
SOLID STATE IONICS, 1986, 21 (04) :333-337
[8]   THE NASICON-TYPE TITANIUM PHOSPHATES LITI2(PO4)3, NATI2(PO4)3 AS ELECTRODE MATERIALS [J].
DELMAS, C ;
NADIRI, A ;
SOUBEYROUX, JL .
SOLID STATE IONICS, 1988, 28 :419-423
[9]  
DELMAS C, UNPUB J ELECTROCHEM
[10]   PHASE-TRANSITIONS AND IONIC-CONDUCTION IN 3D SKELETON PHOSPHATES LI3CR2(PO4)3, LI3FE2(PO4)3, NA3CR2(PO4)3, NA3FE2(PO4)3, AG3CR2(PO4)3, AG3FE2(PO4)3, K3CR2(PO4)3, K3FE2(PO4)3 [J].
DYVOIRE, F ;
PINTARDSCREPEL, M ;
BRETEY, E ;
DELAROCHERE, M .
SOLID STATE IONICS, 1983, 9-10 (DEC) :851-857