1 |
Current and potential distributions on positive plates with conductive Pb3O4 and BaPbO3 in their formation and discharge Guo YL, Liu H Journal of Power Sources, 183(1), 381, 2008 |
2 |
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 |
3 |
A technology for production of a "cureless" paste containing a high concentration of tetrabasic lead sulfate and a low concentration of free lead Boden DP, Loosemo D Journal of Power Sources, 168(1), 90, 2007 |
4 |
Investigation of silica additive for high-rate sealed lead-acid cells Wang LF, Fang BJ, Lin YK, Chen JS Electrochimica Acta, 51(20), 4135, 2006 |
5 |
Positive tubular plates of the lead-acid battery - General analysis of the discharge process D'Alkaine CV, Impinisi RP, Carubelli A Journal of Power Sources, 113(2), 293, 2003 |
6 |
Negative plate discharge in lead acid batteries. Part I: General analysis, utilization and energetic coefficients D'Alkaine CV, Carubelli A, Lopes MC Journal of Applied Electrochemistry, 30(5), 585, 2000 |
7 |
Investigation on soaking and formation of lead/acid battery plates with different mass structure Dreier I, Saez F, Scharf P, Wagner R Journal of Power Sources, 85(1), 117, 2000 |
8 |
A practical method to follow the evolution of electrochemically active areas during plate formation processes in lead acid batteries D'Alkaine CV, de Andrade J, Impinnisi PR Journal of Power Sources, 85(1), 131, 2000 |
9 |
Effect of Na2SO4 additive in positive electrodes on the performance of sealed lead-acid cells for electric scooter applications Chen JS Journal of Power Sources, 90(2), 125, 2000 |
10 |
The curing reaction study of the active material in the lead-acid battery Laruelle S, Grugeon-Dewaele S, Torcheux L, Delahaye-Vidal A Journal of Power Sources, 77(1), 83, 1999 |