Synthesis, Structure, and Physical Studies of the New β-LiVOAsO4 Compound |
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Authors: | J. Gaubicher F. Orsini T. Le Mercier S. Llorente A. Villesuzanne J. Angenault M. Quarton |
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Affiliation: | a Laboratoire de Cristallochimie du Solide, Université Pierre et Marie Curie-Paris VI, 4 place Jussieu, 75252, Paris Cedex 05, France;b Laboratoire de Réactivité et de Chimie du Solide, Université Jules Verne, 33 rue St-Leu, 80039, Amiens Cedex, France;c Institut de Chimie de la Matiére Condensée, Université Bordeaux I, 162 Av. du Dr. A. Schweitzer, 33608, Pessac Cedex, France |
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Abstract: | Two new compounds of the AxMOXO4 family, β-LiVOAsO4 and β-VOAsO4, have been synthesized by solid state reaction and electrochemical lithium deintercalation from β-LiVOAsO4, respectively. Both compounds are isostructural and are built like other β-VOXO4 (X=S, P) by (VO5)∞ chains of distorted VO6 octahedra connected via corner-shared AsO4 tetrahedra. For β-LiVOAsO4 the additional Li+ ions occupy chains of edge-shared octahedra running perpendicularly to the (VO5)∞ chains. The one-dimensional antiferromagnetic behavior suggested by the structure has been experimentaly confirmed. It is shown that lithium deintercalation occurs through a first-order transition at 4.02 V vs Li+/Li0. From chemical bond considerations it is shown why the redox potential of a given transition element M in a six-fold coordination involving (M=O)m+ units lies between those observed in oxides and in M2(XO4)3 compounds with (XO4)n− oxo anions (X=S, P, As). |
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Keywords: | synthesis and structure of β -LiVOAsO4 magnetic behavior lithium intercalation. |
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