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과붕산나트륨 양극 활물질 첨가에 따른 차량용 납산배터리 성능 특성 임태섭, 김성준, 김상동, 양승철, 정연길 Korean Journal of Materials Research, 30(8), 426, 2020 |
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Effect of a mineral additive on the electrical performances of the positive plate of lead acid battery Foudia M, Matrakova M, Zerroual L Journal of Power Sources, 279, 146, 2015 |
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Carbon honeycomb grids for advanced lead-acid batteries. Part I: Proof of concept Kirchev A, Kircheva N, Perrin M Journal of Power Sources, 196(20), 8773, 2011 |
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New approach to prevent premature capacity loss of lead-acid battery in cycle use Sawai K, Tsuboi Y, Okada Y, Shiomi M, Osumi S Journal of Power Sources, 179(2), 799, 2008 |
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Studies of the pulse charge of lead-acid batteries for PV applications - Part III. Electrolyte concentration effects on the electrochemical performance of the positive plate Kirchev A, Delaille A, Karoui F, Perrin M, Lemaire E, Mattera F Journal of Power Sources, 179(2), 808, 2008 |
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Studies of the pulse charge of lead-acid batteries for PV applications - Part II. Impedance of the positive plate revisited Kirchev A, Delaille A, Perrin M, Lemaire E, Mattera F Journal of Power Sources, 170(2), 495, 2007 |
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In situ electrochemical scan to study the behavior of the asymmetric (single-side) pasted positive plate as used in automotive lead-acid batteries Guo YL Journal of Applied Electrochemistry, 36(3), 363, 2006 |
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Modeling of kinetic behavior of the lead dioxide electrode in a lead-acid battery by means of electrochemical impedance spectroscopy Hejabi M, Oweisi A, Gharib N Journal of Power Sources, 158(2), 944, 2006 |
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New generation of non-woven gauntlets for tubular positive plates Toniazzo V Journal of Power Sources, 158(2), 1062, 2006 |
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Influence of phosphoric acid on the grid alloys of positive plates in the lead acid battery system: A comparative study Saminathan K, Jayaprakash N, Rajeswari B, Vasudevan T Journal of Power Sources, 160(2), 1410, 2006 |