Enhancing Electrochemical Performance of Lead-Acid Batteries Using Surface Modified Novel Al Grid as Electrode Substrate
Author:
Publisher
Allerton Press
Subject
Industrial and Manufacturing Engineering,Surfaces, Coatings and Films,Surfaces and Interfaces
Link
http://link.springer.com/content/pdf/10.3103/S1068375521010117.pdf
Reference17 articles.
1. Lushina, M., Kamenev, Yu., Leonov, V., and Ostapenko, E., Use of expanded copper mesh grid for negative electrodes of sealed lead storage batteries, J. Power Sources, 2005, vol. 148, p. 95.
2. Carlos, I.A., Matsuo, T.T., Siqueira, J.L.P., and de Almeida, M.R.H., Voltammetric and morphological study of lead electrodeposition on copper substrate for application of a lead–acid batteries, J. Power Sources, 2004, vol. 132, p. 261.
3. Yolshina, L.A., Kudyakov, V.Ya., and Zyryanov, V.G., Development of an electrode for lead-acid batteries possessing a high electrochemical utilization factor and invariable cycling characteristics, J. Power Sources, 1997, vol. 65, p. 71.
4. Yolshina, L.A., Kudyakov, V.Ya., and Zyryanov, V.G., A lead-film electrode on an aluminium substrate to serve as a lead-acid battery plate, J. Power Sources, 1999, vol. 78, p. 84.
5. Yolshina, L.A., Kudyakov, V.Ya., Malkov, V.B., and Yolshin, A.N., Process of electroless deposition of zinc and lead on aluminum in electrolyte melt by contact exchange method, Surf. Coat. Technol., 2010, vol. 204, p. 4057.
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