1 |
Diagnostics of lithium-ion intercalation rate-determining step: Distinguishing between slow desolvation and slow charge transfer Vassiliev SY, Sentyurin VV, Levin EE, Nikitina VA Electrochimica Acta, 302, 316, 2019 |
2 |
VS2 nanoarchitectures assembled by single-crystal nanosheets for enhanced sodium storage properties Li WB, Huang JF, Feng LL, Cao LY, Liu YJ, Pan LM Electrochimica Acta, 286, 131, 2018 |
3 |
THE INFLUENCE OF INTERCALATED IONS ON CYCLIC STABILITY OF V2O5/GRAPHITE COMPOSITE IN AQUEOUS ELECTROLYTIC SOLUTIONS: EXPERIMENTAL AND THEORETICAL APPROACH Vujkovic M, Pasti I, Simatovic IS, Sljukic B, Milenkovic M, Mentus S Electrochimica Acta, 176, 130, 2015 |
4 |
Versatile insertion capability of Na1.2V3O8 nanobelts in aqueous electrolyte solutions Vujkovic M, Paunkovic BS, Simatovic IS, Mitric M, Sequeira CAC, Mentus S Electrochimica Acta, 147, 167, 2014 |
5 |
Thermodynamic derivation of a Butler-Volmer model for intercalation in Li-ion batteries Latz A, Zausch J Electrochimica Acta, 110, 358, 2013 |
6 |
Synthesis, characterisation and electrochemical intercalation kinetics of nanostructured aluminium-doped Li[Li0.2Mn0.54Ni0.13Co0.13]O-2 cathode material for lithium ion battery Jafta CJ, Ozoemena KI, Mathe MK, Roos WD Electrochimica Acta, 85, 411, 2012 |
7 |
Low-temperature behavior of graphite-tin composite anodes for Li-ion batteries Nobili F, Mancini M, Dsoke S, Tossici R, Marassi R Journal of Power Sources, 195(20), 7090, 2010 |
8 |
A rheological study on kinetics of poly(butylene terephthalate) melt intercalation Wu DF, Zhou CX, Zheng H Journal of Applied Polymer Science, 99(4), 1865, 2006 |