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Detchko Pavlov
Detchko Pavlov
Professor, Institute of Electrochemistry and Energy Systems, Bulgarian Academy of Sciences
Zweryfikowany adres z labatscience.com - Strona główna
Tytuł
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Lead-acid batteries: science and technology, 1st Edition
D Pavlov
Elsevier, 2011
6202011
Mechanism of action of electrochemically active carbons on the processes that take place at the negative plates of lead-acid batteries
D Pavlov, T Rogachev, P Nikolov, G Petkova
Journal of Power Sources 191 (1), 58-75, 2009
2562009
Influence of carbons on the structure of the negative active material of lead-acid batteries and on battery performance
D Pavlov, P Nikolov, T Rogachev
Journal of Power Sources 196 (11), 5155-5167, 2011
2002011
Growth processes of the anodic crystalline layer on potentiostatic oxidation of lead in sulfuric acid
D Pavlov, N Iordanov
Journal of the Electrochemical Society 117 (9), 1103, 1970
1641970
The lead‐acid battery lead dioxide active mass: a gel‐crystal system with proton and electron conductivity
D Pavlov
Journal of the Electrochemical Society 139 (11), 3075, 1992
1621992
Mechanism of the elementary electrochemical processes taking place during oxygen evolution on the lead dioxide electrode
D Pavlov, B Monahov
Journal of the Electrochemical Society 143 (11), 3616, 1996
1591996
Capacitive carbon and electrochemical lead electrode systems at the negative plates of lead–acid batteries and elementary processes on cycling
D Pavlov, P Nikolov
Journal of Power Sources 242, 380-399, 2013
1582013
Processes in solid state at anodic oxidation of a lead electrode in H2SO4 solution and their dependence on the oxide structure and properties
D Pavlov
Electrochimica Acta 23 (9), 845-854, 1978
1471978
Dependence of the composition of the anodic layer on the oxidation potential of lead in sulfuric acid
D Pavlov, CN Poulieff, E Klaja, N Iordanov
Journal of the Electrochemical Society 116 (3), 316, 1969
1391969
Processes of formation of divalent lead oxide compounds on anodic oxidation of lead in sulphuric acid
D Pavlov
Electrochimica Acta 13 (10), 2051-2061, 1968
1341968
Mechanism of passivation processes of the lead sulphate electrode
D Pavlov, R Popova
Electrochimica Acta 15 (9), 1483-1491, 1970
1321970
A theory of the grid/positive active-mass (PAM) interface and possible methods to improve PAM utilization and cycle life of lead/acid batteries
D Pavlov
Journal of power sources 53 (1), 9-21, 1995
1261995
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 …
D Pavlov, P Nikolov, T Rogachev
Journal of Power Sources 195 (14), 4444-4457, 2010
1212010
Mechanism of action of Sn on the passivation phenomena in the lead‐acid battery positive plate (Sn‐free effect)
D Pavlov, B Monakhov, M Maja, N Penazzi
Journal of the Electrochemical Society 136 (1), 27, 1989
1211989
Influence of fast charge on the life cycle of positive lead–acid battery plates
D Pavlov, G Petkova, M Dimitrov, M Shiomi, M Tsubota
Journal of power sources 87 (1-2), 39-56, 2000
1032000
Influence of H2SO4 concentration on the mechanism of the processes and on the electrochemical activity of the Pb/PbO2/PbSO4 electrode
D Pavlov, A Kirchev, M Stoycheva, B Monahov
Journal of Power Sources 137 (2), 288-308, 2004
952004
Lead–carbon electrode with inhibitor of sulfation for lead-acid batteries operating in the HRPSoC duty
D Pavlov, P Nikolov
Journal of The Electrochemical Society 159 (8), A1215, 2012
94*2012
Premature capacity loss (PCL) of the positive lead/acid battery plate: a new concept to describe the phenomenon
D Pavlov
Journal of power sources 42 (3), 345-363, 1993
941993
Mechanism of the electrochemical oxidation of lead to lead dioxide electrode in H 2 SO 4 solution
D Pavlov, Z Dinev
Journal of the Electrochemical Society 127 (4), 855, 1980
861980
Hydration and Amorphization of Active Mass PbO2 Particles and Their Influence on the Electrical Properties of the Lead‐Acid Battery Positive Plate
D Pavlov, I Balkanov, T Halachev, P Rachev
Journal of the Electrochemical Society 136 (11), 3189, 1989
851989
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