1 |
Toward understanding of ion dynamics in highly conductive lithium ion conductors: Some perspectives by solid state NMR techniques Xiang YX, Zheng GR, Zhong GM, Wang DW, Fu RQ, Yang Y Solid State Ionics, 318, 19, 2018 |
2 |
NMR studies on lithium ion migration in sulfide-based conductors, amorphous and crystalline Li3PS4 Hayamizu K, Aihara Y, Watanabe T, Yamada T, Ito S, Machida N Solid State Ionics, 285, 51, 2016 |
3 |
Diffusion-induced Li-7 NMR relaxation of layer-structured tin disulphide - Li diffusion along the buried interfaces in Li0.17SnS2 Langer J, Epp V, Sternad M, Wilkening M Solid State Ionics, 276, 56, 2015 |
4 |
Effect of lithium borate addition on the physical and electrochemical properties of the lithium ion conductor Li3.4Si0.4P0.6O4 Zhang LY, Cheng L, Cabana J, Chen GY, Doeff MM, Richardson TJ Solid State Ionics, 231, 109, 2013 |
5 |
Sol-gel synthesis and lithium ion conductivity of Li7La3Zr2O12 with garnet-related type structure Kokal I, Somer M, Notten PHL, Hintzen HT Solid State Ionics, 185(1), 42, 2011 |
6 |
Ceramic and polymeric solid electrolytes for lithium-ion batteries Fergus JW Journal of Power Sources, 195(15), 4554, 2010 |
7 |
Synthesis of supramolecular solid polymer electrolytes via self-assembly of diborylated ionic liquid Matsumi N, Kagata A, Aoi K Journal of Power Sources, 195(18), 6182, 2010 |
8 |
NMR and electric impedance study of lithium mobility in fast ion conductors LiTi2-xZrx(PO4)(3) (0 <= x <= 2) Arbi K, Tabellout M, Sanz J Solid State Ionics, 180(40), 1613, 2010 |
9 |
Bond valence analysis of structure-property relationships in solid electrolytes Adams S Journal of Power Sources, 159(1), 200, 2006 |
10 |
Investigations on electrical conductivity and chemical compatibility between fast lithium ion conducting garnet-like Li6BaLa2Ta2O12 and lithium battery cathodes Thangadurai V, Weppner W Journal of Power Sources, 142(1-2), 339, 2005 |