R. D. Shannon, Revised Effective Ionic Radii and Systematic Studies of Interatomic Distances in Halides and Chalcogenides, Acta Crystallogr. Sect. A Found. Crystallogr, vol.32, issue.5, pp.751-767, 1976.

H. N. Ng, C. Calvo, and K. L. Idler, Crystallographic Studies and Structural Systematics of the C2 c Alkali Metal Metavanadates, J. Solid State Chem, vol.27, issue.3, pp.90178-90184, 1979.

M. Schindler, F. C. Hawthorne, M. A. Alexander, R. A. Kutluoglu, P. Mandaliev et al., V3O8] Insertion Electrodes: Structures and Diffusion Pathways, pp.2616-2628, 2006.

Y. I. Yuzyuk, E. Gagarina, P. Simon, L. A. Reznitchenko, L. Hennet et al., Synchrotron X-Ray Diffraction and Raman Scattering Investigations of (LixNa1-x)NbO3 Solid Solutions: Evidence of the Rhombohedral Phase, Phys. Rev. B -Condens. Matter Mater. Phys, issue.14, pp.1-7, 2004.

S. K. Mishra, P. S. Krishna, A. B. Shinde, V. B. Jayakrishnan, R. Mittal et al., High Temperature Phase Stability in Li0.12Na0.88NbO3: A Combined Powder X-Ray and Neutron Diffraction Study, J. Appl. Phys, vol.2015, issue.9, pp.0-7

M. D. Peel, S. E. Ashbrook, and P. Lightfoot, Unusual Phase Behavior in the Piezoelectric Perovskite System, Li <inf>x</Inf>Na<inf>1-X</Inf>NbO<inf>3</Inf>, Inorg. Chem, issue.15, p.52, 2013.

S. T. Myung, F. Maglia, K. J. Park, C. S. Yoon, P. Lamp et al., Nickel-Rich Layered Cathode Materials for Automotive Lithium-Ion Batteries: Achievements and Perspectives, ACS Energy Lett, vol.2017, issue.1, pp.196-223

G. Assat and J. Tarascon, Fundamental Understanding and Practical Challenges of Anionic Redox Activity in Li-Ion Batteries, Nat. Energy, vol.1, 2018.

P. K. Nayak, E. M. Erickson, F. Schipper, T. R. Penki, N. Munichandraiah et al., Review on Challenges and Recent Advances in the Electrochemical Performance of High Capacity Li-and Mn-Rich Cathode Materials for Li-Ion Batteries, Adv. Energy Mater, vol.8, issue.8, pp.1-16, 2018.

G. V. Shilov, V. B. Nalbandyan, V. A. Volochaev, and L. O. Atovmyan, Crystal Growth and Crystal Structures of the Layered Ionic Conductors-Sodium Lithium Titanium Oxides, Int. J. Inorg. Mater, vol.2, issue.5, pp.50-57, 2000.

T. Matsumura, R. Kanno, R. Gover, Y. Kawamoto, T. Kamiyama et al., Synthesis, Structure and Physical Properties of LixNa1-xNiO2, Solid State Ionics, 2002.

M. Holzapfel, S. De-brion, C. Darie, P. Bordet, E. Chappel et al., Decoupling of Orbital and Spin Degrees of Freedom in Li 1-xNaxNiO2, Phys. Rev. B Condens. Matter Mater. Phys, issue.13, p.70, 2004.

M. Holzapfel, C. Darie, P. Bordet, E. Chappel, M. D. Núñez-regueiro et al., Mixed Layered Oxide Phases Na XLi 1-XNiO 2: A Detailed Description of Their Preparation and Structural and Magnetic Identification, Solid State Sci, vol.7, issue.5, pp.497-506, 2005.

C. Delmas, C. Fouassier, and P. Hagenmuller, Structural Classification and Properties of the Layered Oxides. Phys. B+C, pp.81-85, 1980.
URL : https://hal.archives-ouvertes.fr/hal-00135169

V. Politaev, V. B. V;-nalbandyan, A. A. Petrenko, I. L. Shukaev, V. A. Volotchaev et al., Mixed Oxides of Sodium, Antimony (5+) and Divalent Metals (Ni, Co, Zn or Mg), J. Solid State Chem, issue.3, pp.684-691, 2010.

W. Schmidt, R. Berthelot, A. W. Sleight, and M. A. Subramanian, Solid Solution Studies of Layered Honeycomb-Ordered Phases O<inf>3</Inf>-Na<inf>3</Inf>M<inf>2</Inf>SbO<inf>6</Inf>(M=Cu, Mg, Ni, Zn), J. Solid State Chem, 0201.

J. Ma, S. H. Bo, L. Wu, Y. Zhu, C. P. Grey et al., Ordered and Disordered Polymorphs of Na(Ni<inf>2/3</Inf>Sb<inf>1/3</Inf>)O<inf>2</Inf>: Honeycomb-Ordered Cathodes for Na-Ion Batteries, Chem. Mater, vol.27, issue.7, pp.2387-2399, 2015.

E. A. Zvereva, M. A. Evstigneeva, V. B. Nalbandyan, O. A. Savelieva, S. A. Ibragimov et al., Monoclinic Honeycomb-Layered Compound Li 3Ni 2SbO 6: Preparation, Crystal Structure and Magnetic Properties, Dalt. Trans, vol.41, issue.2, pp.572-580, 2012.

G. ;. Kresse and . Uller, Efficient Iterative Schemes for Ab Initio Total-Energy Calculations Using a Plane-Wave Basis Set, Phys. Rev. B, issue.16, pp.11169-11186, 1996.

G. Kresse and D. J. , From Ultrasoft Pseudopotentials to the Projector Augmented-Wave Method, Phys. Rev. B, issue.3, pp.1758-1775, 1999.

J. P. Perdew, K. Burke, and M. Ernzerhof, Generalized Gradient Approximation Made Simple, Phys. Rev. Lett, issue.18, pp.3865-3868, 1996.

S. L. Dudarev, G. A. Botton, S. Y. Savrasov, C. J. Humphreys, and A. P. Sutton, Electron-Energy-Loss Spectra and the Structural Stability of Nickel Oxide:&#8194;&#8194;An LSDA+U Study, Phys. Rev. B, vol.57, issue.3, pp.1505-1509, 1998.

R. Berthelot, M. Pollet, D. Carlier, and C. Delmas, Reinvestigation of the OP4-(Li/Na)CoO2-Layered System and First Evidence of the (Li/Na/Na)CoO2 Phase with OPP9 Oxygen Stacking, Inorg. Chem, issue.6, pp.2420-2430, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00577803

R. Berthelot, D. Carlier, and C. Delmas, Electrochemical Investigation of the P2-Na<inf>x</Inf>CoO<inf>2</Inf>phase Diagram, Nat. Mater, vol.10, issue.1, pp.74-80, 2011.

M. Blangero, R. Decourt, D. Carlier, G. Ceder, M. Pollet et al., First Experimental Evidence of Potassium Ordering in Layered K4Co7O14, Inorg. Chem, issue.25, pp.9299-9304, 2005.
URL : https://hal.archives-ouvertes.fr/hal-00019053

J. Br?ger, M. Jiang, ?. Dupr, N. Meng, Y. S. Shao-horn et al., High-Resolution X-Ray Diffraction, DIFFaX, NMR and First Principles Study of Disorder in the Li2MnO3-Li[Ni1/2Mn1/2]O2 Solid Solution, J. Solid State Chem, vol.178, issue.9, pp.2575-2585, 2005.

E. A. Zvereva, M. A. Evstigneeva, V. B. Nalbandyan, O. A. Savelieva, S. A. Ibragimov et al., Monoclinic Honeycomb-Layered Compound Li3Ni2SbO6: Preparation, Crystal Structure and Magnetic Properties, Dalt. Trans, vol.41, issue.2, pp.572-580, 2012.

E. Mccalla, A. Abakumov, G. Rousse, M. Reynaud, M. T. Sougrati et al., Novel Complex Stacking of Fully-Ordered Transition Metal Layers in Li4FeSbO6 Materials, Chem. Mater, vol.27, issue.5, pp.1699-1708, 2015.