1. Ionic conductivity of LiM2(PO4)3 (M=Ti, Zr, Hf) and related compositions
J. Kuwano, N. Sato, M. Kato, K. Takano
Solid State Ionics
Volumes 70-71, Part 1, May-June 1994, Pages 332-336
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http://dx.doi.org/10.1016/0167-2738(94)90332-82. Preparation, structural characterization and conductivity of LiZr2(PO4)3
M. Casciola, U. Costantino, L. Merlini, I.G.Krogh Andersen, E.Krogh Andersen
Solid State Ionics
Volume 26, Issue 3, April 1988, Pages 229-235
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http://dx.doi.org/10.1016/0167-2738(88)90231-73. Lithium location in NASICON-type Li+ conductors by neutron diffraction. I. Triclinic α′-LiZr2(PO4)3
Michele Catti, Sonia Stramare, Richard Ibberson
Solid State Ionics
Volume 123, Issues 1-4, August 1999, Pages 173-180
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http://dx.doi.org/10.1016/S0167-2738(99)00089-24. Effect of MgO addition on the ionic conductivity of LiGe2(PO4)3 ceramics
C.J Leo, G.V Subba Rao, B.V.R Chowdari
Solid State Ionics
Volume 159, Issues 3-4, April 2003, Pages 357-367
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http://dx.doi.org/10.1016/S0167-2738(03)00032-85. Nouvelles solutions solides LI(MIV)2−x(NIV)x(PO4)3 (L = Li,Na M,N = Ge,Sn,Ti,Zr,Hf) synthèse et étude par diffraction x et conductivité ionique
Jean-Marc Winand, André Rulmont, Pierre Tarte
Journal of Solid State Chemistry
Volume 93, Issue 2, August 1991, Pages 341-349
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http://dx.doi.org/10.1016/0022-4596(91)90308-56. High-Temperature Lithium Mobility in α-LiZr2(PO4)3 NASICON by Neutron Diffraction
M. Catti, A. Comotti, and S. Di Blas
Chem. Mater., 2003, 15 (8), pp 1628–1632
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http://dx.doi.org/10.1021/cm021374p7. Lithium Ion Motion in LiZr2(PO4)3
P. Padma kumar and S. Yashonath
J. Phys. Chem. B, 2001, 105 (29), pp 6785–6791
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http://dx.doi.org/10.1021/jp004021r8. Effect of the phase transition of LiSn2(PO4)3 on the Li+ ion conduction in LiSn2(PO4)3 - Teflon composites
Ana Martinez-Juarez, Ricardo Jimenez, Pedro Duran-Martin, Joaquin Ibañez and Jose M Rojo
Journal of Physics: Condensed Matter, Volume 9, Number 20, p. 4119-4128
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http://dx.doi.org/10.1088/0953-8984/9/20/011