Insight into the channel ion distribution and influence on the lithium insertion properties of hexatitanates A2Ti6O13 (A = Na, Li, H) as candidates for anode materials in lithium-ion batteries
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Carlos Perez-Flores, Juan
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Univ CEU San Pablo, Fac Farm, Dept Quim, Madrid 28668, SpainUniv CEU San Pablo, Fac Farm, Dept Quim, Madrid 28668, Spain
Carlos Perez-Flores, Juan
[1
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Garcia-Alvarado, Flaviano
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Univ CEU San Pablo, Fac Farm, Dept Quim, Madrid 28668, SpainUniv CEU San Pablo, Fac Farm, Dept Quim, Madrid 28668, Spain
Garcia-Alvarado, Flaviano
[1
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Hoelzel, Markus
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Tech Univ Darmstadt, Fachbereich Mat & Geowissensch, Fachgebiet Strukt Forsch, D-63762 Darmstadt, GermanyUniv CEU San Pablo, Fac Farm, Dept Quim, Madrid 28668, Spain
Hoelzel, Markus
[2
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Sobrados, Isabel
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ICMM, Dpto Energia & Tecnol Sostenibles, Madrid 28049, SpainUniv CEU San Pablo, Fac Farm, Dept Quim, Madrid 28668, Spain
Sobrados, Isabel
[3
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Sanz, Jesus
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ICMM, Dpto Energia & Tecnol Sostenibles, Madrid 28049, SpainUniv CEU San Pablo, Fac Farm, Dept Quim, Madrid 28668, Spain
Sanz, Jesus
[3
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Kuhn, Alois
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Univ CEU San Pablo, Fac Farm, Dept Quim, Madrid 28668, SpainUniv CEU San Pablo, Fac Farm, Dept Quim, Madrid 28668, Spain
Kuhn, Alois
[1
]
机构:
[1] Univ CEU San Pablo, Fac Farm, Dept Quim, Madrid 28668, Spain
Li2Ti6O13 and H2Ti6O13 were easily synthesized from Na2Ti6O13 by successive Na+-Li+-H+ ion exchange. The crystal structures of Na2Ti6O13, Li2Ti6O13 and H2Ti6O13 were investigated using neutron powder diffraction. Monovalent A(+) cations (Na, Li and H) have been located using difference Fourier analysis. Although monoclinic lattice parameters (space group C2/m) of the three titanates remain almost unchanged with retention of the basic [Ti6O132-] network, monovalent Na, Li and H cations occupy different sites in the tunnel space. By comparing the structural details concerning the A(+) oxygen coordination, i.e. NaO8 square prismatic coordination, LiO4 square planar coordination and covalently bond H atoms, with results from N-23(a), Li-7 and H-1 NMR spectroscopy we were able to obtain a more detailed insight into the respective local distortions and anharmonic motions. We were able to show that the site that the A(+) cation occupies in the hexatitanate channel structure strongly influences the lithium insertion properties of these compounds and therefore their usefulness as electrode materials for energy storage.