화학공학소재연구정보센터
검색결과 : 11건
No. Article
1 Influence of preparation temperature on ionic conductivity of titanium-defective Li1+4xTi2-x(PO4)(3) NASICON-type materials
Kahlaoui R, Arbi K, Jimenez R, Sobrados I, Sanz J, Ternane R
Journal of Materials Science, 55(20), 8464, 2020
2 Distribution and mobility of lithium in NASICON-type Li1-xTi2-xNbx(PO4)(3) (0 <= x <= 0.5) compounds
Kahlaoui R, Arbi K, Jimenez R, Sobrados I, Sanz J, Ternane R
Materials Research Bulletin, 101, 146, 2018
3 Cation Miscibility and Lithium Mobility in NASICON Li1+xTi2-xScx(PO4)(3) (0 <= x <= 0.5) Series: A Combined NMR and Impedance Study
Kahlaoui R, Arbi K, Sobrados I, Jimenez R, Sanz J, Ternane R
Inorganic Chemistry, 56(3), 1216, 2017
4 A Review on the Durability of Alkali-Activated Fly Ash/Slag Systems: Advances, Issues, and Perspectives
Arbi K, Nedeljkovic M, Zuo YB, Ye G
Industrial & Engineering Chemistry Research, 55(19), 5439, 2016
5 Modeling Ti/Ge Distribution in LiTi2-xGex(PO4)(3) NASICON Series by (31)p MAS NMR and First-Principles DFT Calculations
Diez-Gomez V, Arbi K, Sanz J
Journal of the American Chemical Society, 138(30), 9479, 2016
6 On the influence of the cation vacancy on lithium conductivity of Li-1 (+) xRxTi2- (x)(PO4)(3) Nasicon type materials
Arbi K, Jimenez R, Salkus T, Orliukas AF, Sanz J
Solid State Ionics, 271, 28, 2015
7 Structural Factors That Enhance Lithium Mobility in Fast-Ion Li1+xTi2-xAlx(PO4)(3) (0 <= x <= 0.4) Conductors Investigated by Neutron Diffraction in the Temperature Range 100-500 K
Arbi K, Hoelzel M, Kuhn A, Garcia-Alvarado F, Sanz J
Inorganic Chemistry, 52(16), 9290, 2013
8 Characterization of Lithium Insertion into NASICON-Type Li1+xTi2-xAlx (PO4)(3) and Its Electrochemical Behavior
Arbi K, Kuhn A, Sanz J, Garcia-Alvarado F
Journal of the Electrochemical Society, 157(6), A654, 2010
9 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
10 Lithium exchange processes in the conduction network of the nasicon LiTi2-Zr-x(x)(PO4)(3) series (0 <= x <= 2)
Arbi K, Paris MA, Sanz J
Journal of Physical Chemistry B, 110(13), 6454, 2006