1 |
Enhancing the cycle life of Lead-Acid batteries by modifying negative grid surface Rahmanifar MS Electrochimica Acta, 235, 10, 2017 |
2 |
Enhancing the performance of lead-acid batteries with carbon - In pursuit of an understanding Moseley PT, Rand DAJ, Peters K Journal of Power Sources, 295, 268, 2015 |
3 |
Carbon honeycomb grids for advanced lead-acid batteries. Part II: Operation of the negative plates Kirchev A, Dumenil S, Alias M, Christin R, de Mascarel A, Perrin M Journal of Power Sources, 279, 809, 2015 |
4 |
An in situ generated carbon as integrated conductive additive for hierarchical negative plate of lead-acid battery Saravanan M, Ganesan M, Ambalavanan S Journal of Power Sources, 251, 20, 2014 |
5 |
Beneficial effects of activated carbon additives on the performance of negative lead-acid battery electrode for high-rate partial-state-of-charge operation Xiang JY, Ding P, Zhang H, Wu XZ, Chen J, Yang YS Journal of Power Sources, 241, 150, 2013 |
6 |
Capacitive carbon and electrochemical lead electrode systems at the negative plates of lead-acid batteries and elementary processes on cycling Pavlov D, Nikolov P Journal of Power Sources, 242, 380, 2013 |
7 |
Solid state reactions at metal/film interfaces: The case of the Pb/PbSO4 interface D'Alkaine CV, de Souza LLM, Brito GAD Journal of Power Sources, 210, 218, 2012 |
8 |
Designing lead-acid batteries to meet energy and power requirements of future automobiles Moseley PT, Rand DAJ, Monahov B Journal of Power Sources, 219, 75, 2012 |
9 |
Influence of carbons on the structure of the negative active material of lead-acid batteries and on battery performance Pavlov D, Nikolov P, Rogachev T Journal of Power Sources, 196(11), 5155, 2011 |
10 |
Influence of expander components on the processes at the negative plates of lead-acid cells on high-rate partial-state-of-charge cycling. Part II. Effect of carbon additives on the processes of charge and discharge of negative plates Pavlov D, Nikolov P, Rogachev T Journal of Power Sources, 195(14), 4444, 2010 |