1 |
Soluble sulfur-based copolymers prepared from elemental sulfur and alkenyl alcohol as positive active material for lithium-sulfur batteries Yamabuki K, Itaoka K, Shinchi T, Yoshimoto N, Ueno K, Tsutsumi H Polymer, 117, 225, 2017 |
2 |
Influence of the active mass particle suspension in electrolyte upon corrosion of negative electrode of a lead-acid battery Kamenev Y, Shtompel G, Ostapenko E, Leonov V Journal of Power Sources, 257, 181, 2014 |
3 |
Methanothermal reduction of mixtures of PbSO4 and PbO2 to synthesize ultrafine alpha-PbO powders for lead acid batteries Gao PR, Liu Y, Lv WX, Zhang R, Liu W, Bu XF, Li GH, Lei LX Journal of Power Sources, 265, 192, 2014 |
4 |
Effects of surface morphology of nanostructured PbO2 thin films on their electrochemical properties Chen T, Huang H, Ma HY, Kong DL Electrochimica Acta, 88, 79, 2013 |
5 |
PbSO4 as a precursor for positive active material electrodes Foudia M, Matrakova M, Zerroual L Journal of Power Sources, 207, 51, 2012 |
6 |
180 Ah kg(-1) specific capacity positive tubular electrodes for lead acid batteries de Andrade J, Impinnisi PR, do Vale DL Journal of Power Sources, 196(10), 4832, 2011 |
7 |
Application of a novel gelled-electrolyte in valve-regulated lead-acid batteries with tubular positive plates Tang Z, Wang JM, Mao XX, Chen QQ, Shen C, Zhang JQ Journal of Applied Electrochemistry, 37(10), 1163, 2007 |
8 |
Investigation and application of poly siloxane-based gel electrolyte in valve-regulated lead-acid battery Tang Z, Wang JM, Mao XX, Shao HB, Chen QQ, Xu ZH, Zhang JQ Journal of Power Sources, 168(1), 49, 2007 |
9 |
A mixture of LiNi1/3Co1/3Mn1/3O2 and LiCoO2 as positive active material of LIB for power application Liu XJ, Zhu GY, Yang K, Wang JQ Journal of Power Sources, 174(2), 1126, 2007 |
10 |
Relationship between water departure and capacity loss of alpha and beta-PbO2 using an all solid-state system: Estimation of proton diffusion coefficient Zerroual L, Fitas R, Djellouli B, Chelali N Journal of Power Sources, 158(2), 837, 2006 |