Quasi-one-dimensional polaronic states due to the preferential reduction in the Li1 xV3O8insertion electrode
Author:
Publisher
IOP Publishing
Subject
Condensed Matter Physics,General Materials Science
Link
http://stacks.iop.org/0953-8984/15/i=19/a=310/pdf
Reference22 articles.
1. Li / Li1 + x V 3 O 8 Secondary Batteries: III . Further Characterization of the Mechanism of Li+ Insertion and of the Cycling Behavior
2. Li1+xV3O8 as a Lithium Insertion Host
3. Structural characterization of Li1+xV3O8 insertion electrodes by single-crystal X-ray diffraction
4. Crystal chemistry of non-stoichiometric pentavalent vandadium oxides: crystal structure of Li1+xV3O8
5. The spin-gap state and the linear-chain state in δ-phase AgxV2O5with a double-layered structure
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1. Self-consistent evaluation of effective Coulomb interaction U and its utilization to understand the degree of localization of electrons in vanadium spinels;Physics Letters A;2017-07
2. Calculations of the thermodynamic and kinetic properties of Li1+xV3O8;Physical Review B;2012-06-13
3. Influence of adsorbed polar molecules on the electronic transport in a composite material Li1.1V3O8–PMMA for lithium batteries;Physical Chemistry Chemical Physics;2012
4. Li local environments and the dynamics in the Li1+xV3O8insertion electrode;Journal of Physics: Condensed Matter;2005-06-17
5. The crystal structures and quasi-one-dimensional electronic properties of Ag1+xV3O8and Na1+xV3O8;Journal of Physics: Condensed Matter;2004-11-27
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