1 |
Activity correction in a moving-boundary model for electrochemical lithium intercalation and discharge/charge voltage in LiCoO2 electrodes Tamura K, Tatsukawa E Journal of Applied Electrochemistry, 47(3), 381, 2017 |
2 |
Activity correction on electrochemical reaction and diffusion in lithium intercalation electrodes for discharge/charge simulation by single particle model Tatsukawa E, Tamura K Electrochimica Acta, 115, 75, 2014 |
3 |
Thermodynamic model development for lithium intercalation electrodes Karthikeyan DK, Sikha G, White RE Journal of Power Sources, 185(2), 1398, 2008 |
4 |
A review on the solid-state ionics of electrochemical intercalation processes: How to interpret properly their electrochemical response Aurbach D, Levi MD, Levi E Solid State Ionics, 179(21-26), 742, 2008 |
5 |
Electrochemical responses of active metal insertion electrodes and electronically conducting polymers: common features and new insights Levi MD, Cohen YS, Gofer Y, Aurbach D Electrochimica Acta, 49(22-23), 3701, 2004 |
6 |
Comparison of equilibrium electrochemical behavior of PdHx and LixMn2O4 intercalation electrodes in terms of sorption isotherms Tsirlina GA, Levi MD, Petrii OA, Aurbach D Electrochimica Acta, 46(26-27), 4141, 2001 |
7 |
New halogenated additives to propylene carbonate-based electrolytes for lithium-ion batteries Naji A, Ghanbaja J, Willmann P, Billaud D Electrochimica Acta, 45(12), 1893, 2000 |
8 |
Surface and electrochemical investigations of a fullerene soot Silva SAM, Perez J, Torresi RM, Luengo CA, Ticianelli EA Electrochimica Acta, 44(20), 3565, 1999 |
9 |
The interaction between SnO anode and electrolytes Li JZ, Li H, Wang ZX, Huang XJ, Chen LQ Journal of Power Sources, 81-82, 346, 1999 |
10 |
Interrelation between structural and electrochemical properties of the cathode based on vanadium oxide for rechargeable batteries Shembel E, Apostolova R, Nagirny V, Aurbach D, Markovsky B Journal of Power Sources, 81-82, 480, 1999 |