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Volumn 61, Issue 6, 2016, Pages 451-458

Research progresses of cathodic hydrogen evolution in advanced lead–acid batteries

Author keywords

Hydrogen evolution reaction; Hydrogen inhibition; Lead carbon battery; Ultrabattery

Indexed keywords

CARBON; CHARGING (BATTERIES); HYDROGEN;

EID: 84959567184     PISSN: 20959273     EISSN: 20959281     Source Type: Journal    
DOI: 10.1007/s11434-016-1023-0     Document Type: Review
Times cited : (66)

References (66)
  • 1
    • 84873180835 scopus 로고    scopus 로고
    • Towards promising electrochemical technology for load leveling applications: extending cycle life of lead–acid batteries by the use of carbon nano-tubes (CNTs)
    • Shapira R, Nessim GD, Zimrin T et al (2013) Towards promising electrochemical technology for load leveling applications: extending cycle life of lead–acid batteries by the use of carbon nano-tubes (CNTs). Energy Environ Sci 6:587–594
    • (2013) Energy Environ Sci , vol.6 , pp. 587-594
    • Shapira, R.1    Nessim, G.D.2    Zimrin, T.3
  • 2
    • 84862970961 scopus 로고    scopus 로고
    • 2 nanoplates with enhanced performances for electrochemical devices
    • 2 nanoplates with enhanced performances for electrochemical devices. Chem Commun 48:1275–1277
    • (2012) Chem Commun , vol.48 , pp. 1275-1277
    • Ding, L.X.1    Zheng, F.L.2    Wang, J.W.3
  • 3
    • 82555202742 scopus 로고    scopus 로고
    • Autonomous interfacial creation of nanostructured lead oxide
    • Kwon Y, Lee H, Lee J (2011) Autonomous interfacial creation of nanostructured lead oxide. Nanoscale 3:4984–4988
    • (2011) Nanoscale , vol.3 , pp. 4984-4988
    • Kwon, Y.1    Lee, H.2    Lee, J.3
  • 4
    • 1542739969 scopus 로고    scopus 로고
    • Ethylene glycol-mediated synthesis of metal oxide nanowires
    • Jiang X, Wang Y, Herricks T et al (2004) Ethylene glycol-mediated synthesis of metal oxide nanowires. J Mater Chem 14:695–703
    • (2004) J Mater Chem , vol.14 , pp. 695-703
    • Jiang, X.1    Wang, Y.2    Herricks, T.3
  • 5
    • 79751528638 scopus 로고    scopus 로고
    • Lead–acid batteries in micro-hybrid vehicles
    • Albers J, Meissner E, Shirazi S (2011) Lead–acid batteries in micro-hybrid vehicles. J Power Sources 196:3993–4002
    • (2011) J Power Sources , vol.196 , pp. 3993-4002
    • Albers, J.1    Meissner, E.2    Shirazi, S.3
  • 6
    • 70349495261 scopus 로고    scopus 로고
    • 2: investigation of the gel formation and discharge mechanisms
    • 2: investigation of the gel formation and discharge mechanisms. Electrochim Acta 54:7382–7388
    • (2009) Electrochim Acta , vol.54 , pp. 7382-7388
    • Pech, D.1    Brousse, T.2    Bélanger, D.3
  • 7
    • 78449304761 scopus 로고    scopus 로고
    • Effects of covalently bonded siloxane on the electrochemical and physical behaviour of GEL-VRLA battery
    • Li H, Liu H, Wang Q et al (2010) Effects of covalently bonded siloxane on the electrochemical and physical behaviour of GEL-VRLA battery. Electrochim Acta 56:663–666
    • (2010) Electrochim Acta , vol.56 , pp. 663-666
    • Li, H.1    Liu, H.2    Wang, Q.3
  • 8
    • 0033741098 scopus 로고    scopus 로고
    • Advanced design of valve-regulated lead–acid battery for hybrid electric vehicles
    • Lam LT, Newnham RH, Ozgun H et al (2000) Advanced design of valve-regulated lead–acid battery for hybrid electric vehicles. J Power Sources 88:92–97
    • (2000) J Power Sources , vol.88 , pp. 92-97
    • Lam, L.T.1    Newnham, R.H.2    Ozgun, H.3
  • 9
    • 2342531073 scopus 로고    scopus 로고
    • Failure mode of valve-regulated lead–acid batteries under high-rate partial-state-of-charge operation
    • Lam LT, Haigh NP, Phyland CG et al (2004) Failure mode of valve-regulated lead–acid batteries under high-rate partial-state-of-charge operation. J Power Sources 133:126–134
    • (2004) J Power Sources , vol.133 , pp. 126-134
    • Lam, L.T.1    Haigh, N.P.2    Phyland, C.G.3
  • 10
    • 20344364171 scopus 로고    scopus 로고
    • Novel technique to ensure battery reliability in 42-V PowerNets for new-generation automobiles
    • Lam LT, Haigh NP, Phyland CG et al (2005) Novel technique to ensure battery reliability in 42-V PowerNets for new-generation automobiles. J Power Sources 144:552–559
    • (2005) J Power Sources , vol.144 , pp. 552-559
    • Lam, L.T.1    Haigh, N.P.2    Phyland, C.G.3
  • 11
    • 77950022237 scopus 로고    scopus 로고
    • Carbon reactions and effects on valve-regulated lead–acid (VRLA) battery cycle life in high-rate, partial state-of-charge cycling
    • Bullock KR (2010) Carbon reactions and effects on valve-regulated lead–acid (VRLA) battery cycle life in high-rate, partial state-of-charge cycling. J Power Sources 195:4513–4519
    • (2010) J Power Sources , vol.195 , pp. 4513-4519
    • Bullock, K.R.1
  • 12
    • 0033908857 scopus 로고    scopus 로고
    • In situ analysis of electrochemical reactions at a lead surface in sulfuric acid solution
    • Yamaguchi Y, Shiota M, Nakayama Y et al (2000) In situ analysis of electrochemical reactions at a lead surface in sulfuric acid solution. J Power Sources 85:22–28
    • (2000) J Power Sources , vol.85 , pp. 22-28
    • Yamaguchi, Y.1    Shiota, M.2    Nakayama, Y.3
  • 14
    • 0033902540 scopus 로고    scopus 로고
    • Influence of fast charge on the life cycle of positive lead–acid battery plates
    • Pavlov D, Petkova G, Dimitrov M et al (2000) Influence of fast charge on the life cycle of positive lead–acid battery plates. J Power Sources 87:39–56
    • (2000) J Power Sources , vol.87 , pp. 39-56
    • Pavlov, D.1    Petkova, G.2    Dimitrov, M.3
  • 15
    • 0033742901 scopus 로고    scopus 로고
    • Search for an optimized cyclic charging algorithm for valve-regulated lead–acid batteries
    • Nelson RF, Sexton ED, Olson JB et al (2000) Search for an optimized cyclic charging algorithm for valve-regulated lead–acid batteries. J Power Sources 88:44–52
    • (2000) J Power Sources , vol.88 , pp. 44-52
    • Nelson, R.F.1    Sexton, E.D.2    Olson, J.B.3
  • 16
    • 0035277401 scopus 로고    scopus 로고
    • The influence of different negative expanders on the performance of VRLA single cells
    • Saez F, Martinez B, Marin D et al (2001) The influence of different negative expanders on the performance of VRLA single cells. J Power Sources 95:174–190
    • (2001) J Power Sources , vol.95 , pp. 174-190
    • Saez, F.1    Martinez, B.2    Marin, D.3
  • 17
    • 77950021629 scopus 로고    scopus 로고
    • Optimization studies of carbon additives to negative active material for the purpose of extending the life of VRLA batteries in high-rate partial-state-of-charge operation
    • Boden DP, Loosemore DV, Spence MA et al (2010) Optimization studies of carbon additives to negative active material for the purpose of extending the life of VRLA batteries in high-rate partial-state-of-charge operation. J Power Sources 195:4470–4493
    • (2010) J Power Sources , vol.195 , pp. 4470-4493
    • Boden, D.P.1    Loosemore, D.V.2    Spence, M.A.3
  • 18
    • 0030103664 scopus 로고    scopus 로고
    • Failure modes of valve-regulated lead/acid batteries
    • Nakamura K, Shiomi M, Takahashi K et al (1996) Failure modes of valve-regulated lead/acid batteries. J Power Sources 59:153–157
    • (1996) J Power Sources , vol.59 , pp. 153-157
    • Nakamura, K.1    Shiomi, M.2    Takahashi, K.3
  • 19
    • 0030646276 scopus 로고    scopus 로고
    • Effects of carbon in negative plates on cycle-life performance of valve-regulated lead/acid batteries
    • Shiomi M, Funato T, Nakamura K et al (1997) Effects of carbon in negative plates on cycle-life performance of valve-regulated lead/acid batteries. J Power Sources 64:147–152
    • (1997) J Power Sources , vol.64 , pp. 147-152
    • Shiomi, M.1    Funato, T.2    Nakamura, K.3
  • 20
    • 33746892355 scopus 로고    scopus 로고
    • Development of ultra-battery for hybrid-electric vehicle applications
    • Lam LT, Louey R (2006) Development of ultra-battery for hybrid-electric vehicle applications. J Power Sources 158:1140–1148
    • (2006) J Power Sources , vol.158 , pp. 1140-1148
    • Lam, L.T.1    Louey, R.2
  • 21
    • 84952038850 scopus 로고    scopus 로고
    • Enhancing the performance of lead-acid batteries with carbon-In pursuit of an understanding
    • Moseley PT, Rand DA, Peters K (2015) Enhancing the performance of lead-acid batteries with carbon-In pursuit of an understanding. J Power Sources 295:268–274
    • (2015) J Power Sources , vol.295 , pp. 268-274
    • Moseley, P.T.1    Rand, D.A.2    Peters, K.3
  • 22
    • 35748963533 scopus 로고    scopus 로고
    • VRLA Ultrabattery for high-rate partial-state-of-charge operation
    • Lam LT, Louey R, Haigh NP et al (2007) VRLA Ultrabattery for high-rate partial-state-of-charge operation. J Power Sources 174:16–29
    • (2007) J Power Sources , vol.174 , pp. 16-29
    • Lam, L.T.1    Louey, R.2    Haigh, N.P.3
  • 23
    • 33744921680 scopus 로고    scopus 로고
    • The role of carbon in valve-regulated lead–acid battery technology
    • Moseley PT, Nelson RF, Hollenkamp AF (2006) The role of carbon in valve-regulated lead–acid battery technology. J Power Sources 157:3–10
    • (2006) J Power Sources , vol.157 , pp. 3-10
    • Moseley, P.T.1    Nelson, R.F.2    Hollenkamp, A.F.3
  • 24
    • 60649083560 scopus 로고    scopus 로고
    • The ultrabattery—a new battery design for a new beginning in hybrid electric vehicle energy storage
    • Cooper A, Furakawa J, Lam L et al (2009) The ultrabattery—a new battery design for a new beginning in hybrid electric vehicle energy storage. J Power Sources 188:642–649
    • (2009) J Power Sources , vol.188 , pp. 642-649
    • Cooper, A.1    Furakawa, J.2    Lam, L.3
  • 25
    • 84991958924 scopus 로고    scopus 로고
    • The existing problems in the development of lead-carbon batteries
    • Wang FQ, Zhu ZH, Chen HY et al (2011) The existing problems in the development of lead-carbon batteries. Chin Labat Man 48:60–64
    • (2011) Chin Labat Man , vol.48 , pp. 60-64
    • Wang, F.Q.1    Zhu, Z.H.2    Chen, H.Y.3
  • 26
    • 84877983857 scopus 로고    scopus 로고
    • Beneficial effects of activated carbon additives on the performance of negative lead–acid battery electrode for high-rate partial-state-of-charge operation
    • Xiang J, Ding P, Zhang H et al (2013) Beneficial effects of activated carbon additives on the performance of negative lead–acid battery electrode for high-rate partial-state-of-charge operation. J Power Sources 241:150–158
    • (2013) J Power Sources , vol.241 , pp. 150-158
    • Xiang, J.1    Ding, P.2    Zhang, H.3
  • 27
    • 84911468748 scopus 로고    scopus 로고
    • Effects of carbon additives on the performance of negative electrode of lead–carbon battery
    • Zou X, Kang Z, Shu D et al (2015) Effects of carbon additives on the performance of negative electrode of lead–carbon battery. Electrochim Acta 151:89–98
    • (2015) Electrochim Acta , vol.151 , pp. 89-98
    • Zou, X.1    Kang, Z.2    Shu, D.3
  • 28
    • 84925707080 scopus 로고    scopus 로고
    • Characterization of lead(II)-containing activated carbon and its excellent performance of extending lead–acid battery cycle life for high-rate partial-state-of-charge operation
    • Tong P, Zhao R, Zhang R et al (2015) Characterization of lead(II)-containing activated carbon and its excellent performance of extending lead–acid battery cycle life for high-rate partial-state-of-charge operation. J Power Sources 286:91–102
    • (2015) J Power Sources , vol.286 , pp. 91-102
    • Tong, P.1    Zhao, R.2    Zhang, R.3
  • 29
    • 71549130492 scopus 로고    scopus 로고
    • Further demonstration of the VRLA-type ultrabattery under medium-HEV duty and development of the flooded-type ultrabattery for micro-HEV applications
    • Furukawa J, Takada T, Monma D et al (2010) Further demonstration of the VRLA-type ultrabattery under medium-HEV duty and development of the flooded-type ultrabattery for micro-HEV applications. J Power Sources 195:1241–1245
    • (2010) J Power Sources , vol.195 , pp. 1241-1245
    • Furukawa, J.1    Takada, T.2    Monma, D.3
  • 30
    • 84890850067 scopus 로고    scopus 로고
    • Application of carbon materials in lead–acid batteries
    • Zhang H, Cao G, Yang Y (2010) Application of carbon materials in lead–acid batteries. Chin J Power Sources 7:038
    • (2010) Chin J Power Sources , vol.7 , pp. 038
    • Zhang, H.1    Cao, G.2    Yang, Y.3
  • 31
    • 85012302730 scopus 로고    scopus 로고
    • Review of carbon materials energy storage mechanism in lead–carbon battery
    • Wang L, Zhang H, Chen H et al (2014) Review of carbon materials energy storage mechanism in lead–carbon battery. J Electrochem 20:476–481
    • (2014) J Electrochem , vol.20 , pp. 476-481
    • Wang, L.1    Zhang, H.2    Chen, H.3
  • 32
    • 84991958639 scopus 로고    scopus 로고
    • Research progress of ultra lead–acid batteries
    • Zhang H, Wu XZ, Xiang JY et al (2012) Research progress of ultra lead–acid batteries. Chin Battery Ind 3:013
    • (2012) Chin Battery Ind , vol.3 , pp. 013
    • Zhang, H.1    Wu, X.Z.2    Xiang, J.Y.3
  • 33
    • 84920106740 scopus 로고    scopus 로고
    • Advancing the electrochemistry of the hydrogen-evolution reaction through combining experiment and theory
    • Zheng Y, Jiao Y, Jaroniec M et al (2015) Advancing the electrochemistry of the hydrogen-evolution reaction through combining experiment and theory. Angew Chem Int Ed 54:52–65
    • (2015) Angew Chem Int Ed , vol.54 , pp. 52-65
    • Zheng, Y.1    Jiao, Y.2    Jaroniec, M.3
  • 36
    • 0032073962 scopus 로고    scopus 로고
    • Oxide for valve-regulated lead–acid batteries
    • Lam LT, Lim OV, Haigh NP et al (1998) Oxide for valve-regulated lead–acid batteries. J Power Sources 73:36–46
    • (1998) J Power Sources , vol.73 , pp. 36-46
    • Lam, L.T.1    Lim, O.V.2    Haigh, N.P.3
  • 37
    • 0030164524 scopus 로고    scopus 로고
    • Activated carbons and double layer capacitance
    • Shi H (1996) Activated carbons and double layer capacitance. Electrochim Acta 41:1633–1639
    • (1996) Electrochim Acta , vol.41 , pp. 1633-1639
    • Shi, H.1
  • 38
    • 0032050091 scopus 로고    scopus 로고
    • 2 evolution to the structure of single-crystal Pt surfaces, and the relation between opd and UPD H
    • 2 evolution to the structure of single-crystal Pt surfaces, and the relation between opd and UPD H. J Electroanal Chem 446:125–138
    • (1998) J Electroanal Chem , vol.446 , pp. 125-138
    • Barber, J.1    Morin, S.2    Conway, B.E.3
  • 39
    • 84927949007 scopus 로고    scopus 로고
    • Design of electrocatalysts for oxygen-and hydrogen-involving energy conversion reactions
    • Jiao Y, Zheng Y, Jaroniec M et al (2015) Design of electrocatalysts for oxygen-and hydrogen-involving energy conversion reactions. Chem Soc Rev 44:2060–2086
    • (2015) Chem Soc Rev , vol.44 , pp. 2060-2086
    • Jiao, Y.1    Zheng, Y.2    Jaroniec, M.3
  • 40
    • 0038137002 scopus 로고    scopus 로고
    • Electrochemical studies of hydrogen evolution, storage and oxidation on carbon nanotube electrodes
    • Prosini PP, Pozio A, Botti S et al (2003) Electrochemical studies of hydrogen evolution, storage and oxidation on carbon nanotube electrodes. J Power Sources 118:265–269
    • (2003) J Power Sources , vol.118 , pp. 265-269
    • Prosini, P.P.1    Pozio, A.2    Botti, S.3
  • 41
    • 2342462197 scopus 로고
    • Carbon electrodes: part 1. Hydrogen evolution in acidic solution
    • Brennan MPJ, Brown OR (1972) Carbon electrodes: part 1. Hydrogen evolution in acidic solution. J Appl Electrochem 2:43–49
    • (1972) J Appl Electrochem , vol.2 , pp. 43-49
    • Brennan, M.P.J.1    Brown, O.R.2
  • 42
    • 84947261508 scopus 로고    scopus 로고
    • Effect of activated carbon surface functional groups on nano-lead electrodeposition and hydrogen evolution and its applications in lead–carbon batteries
    • Wang L, Zhang H, Cao G et al (2015) Effect of activated carbon surface functional groups on nano-lead electrodeposition and hydrogen evolution and its applications in lead–carbon batteries. Electrochim Acta 186:654–663
    • (2015) Electrochim Acta , vol.186 , pp. 654-663
    • Wang, L.1    Zhang, H.2    Cao, G.3
  • 43
    • 76449102345 scopus 로고    scopus 로고
    • Nitrogen-doped carbon nanotubes as a cathode catalyst for the oxygen reduction reaction in alkaline medium
    • Nagaiah TC, Kundu S, Bron M et al (2010) Nitrogen-doped carbon nanotubes as a cathode catalyst for the oxygen reduction reaction in alkaline medium. Electrochem Commun 12:338–341
    • (2010) Electrochem Commun , vol.12 , pp. 338-341
    • Nagaiah, T.C.1    Kundu, S.2    Bron, M.3
  • 44
    • 84893059860 scopus 로고    scopus 로고
    • Heterogeneous nanocarbon materials for oxygen reduction reaction
    • Wang DW, Su D (2014) Heterogeneous nanocarbon materials for oxygen reduction reaction. Energy Environ Sci 7:576–591
    • (2014) Energy Environ Sci , vol.7 , pp. 576-591
    • Wang, D.W.1    Su, D.2
  • 45
    • 84943194172 scopus 로고    scopus 로고
    • A high performance sulfur-doped disordered carbon anode for sodium ion batteries
    • Li W, Zhou M, Li H et al (2015) A high performance sulfur-doped disordered carbon anode for sodium ion batteries. Energy Environ Sci 8:2916–2921
    • (2015) Energy Environ Sci , vol.8 , pp. 2916-2921
    • Li, W.1    Zhou, M.2    Li, H.3
  • 46
    • 77954646001 scopus 로고    scopus 로고
    • Tuning the acid/base properties of nanocarbons by functionalization via amination
    • Arrigo R, Hävecker M, Wrabetz S et al (2010) Tuning the acid/base properties of nanocarbons by functionalization via amination. J Am Chem Soc 132:9616–9630
    • (2010) J Am Chem Soc , vol.132 , pp. 9616-9630
    • Arrigo, R.1    Hävecker, M.2    Wrabetz, S.3
  • 47
    • 84925172145 scopus 로고    scopus 로고
    • Facile synthesis of nitrogen and fluorine co-doped carbon materials as efficient electrocatalysts for oxygen reduction reactions in air-cathode microbial fuel cells
    • Meng K, Liu Q, Huang Y et al (2015) Facile synthesis of nitrogen and fluorine co-doped carbon materials as efficient electrocatalysts for oxygen reduction reactions in air-cathode microbial fuel cells. J Mater Chem A 3:6873–6877
    • (2015) J Mater Chem A , vol.3 , pp. 6873-6877
    • Meng, K.1    Liu, Q.2    Huang, Y.3
  • 48
    • 59849084114 scopus 로고    scopus 로고
    • Nitrogen-doped carbon nanotube arrays with high electrocatalytic activity for oxygen reduction
    • Gong K, Du F, Xia Z et al (2009) Nitrogen-doped carbon nanotube arrays with high electrocatalytic activity for oxygen reduction. Science 323:760–764
    • (2009) Science , vol.323 , pp. 760-764
    • Gong, K.1    Du, F.2    Xia, Z.3
  • 49
    • 84905748770 scopus 로고    scopus 로고
    • Hydrogen evolution inhibition with diethylenetriamine modification of activated carbon for a lead–acid battery
    • Hong B, Yu X, Jiang L et al (2014) Hydrogen evolution inhibition with diethylenetriamine modification of activated carbon for a lead–acid battery. RSC Adv 4:33574–33577
    • (2014) RSC Adv , vol.4 , pp. 33574-33577
    • Hong, B.1    Yu, X.2    Jiang, L.3
  • 50
    • 84901649639 scopus 로고    scopus 로고
    • Toward design of synergistically active carbon-based catalysts for electrocatalytic hydrogen evolution
    • Zheng Y, Jiao Y, Li LH et al (2014) Toward design of synergistically active carbon-based catalysts for electrocatalytic hydrogen evolution. ACS Nano 8:5290–5296
    • (2014) ACS Nano , vol.8 , pp. 5290-5296
    • Zheng, Y.1    Jiao, Y.2    Li, L.H.3
  • 51
    • 84908006772 scopus 로고    scopus 로고
    • Nitrogen-doped activated carbon as a metal free catalyst for hydrogen production in microbial electrolysis cells
    • Zhang B, Wen Z, Ci S et al (2014) Nitrogen-doped activated carbon as a metal free catalyst for hydrogen production in microbial electrolysis cells. RSC Adv 4:49161–49164
    • (2014) RSC Adv , vol.4 , pp. 49161-49164
    • Zhang, B.1    Wen, Z.2    Ci, S.3
  • 52
    • 84860736699 scopus 로고    scopus 로고
    • Review on recent progress in nitrogen-doped graphene: synthesis, characterization, and its potential applications
    • Wang H, Maiyalagan T, Wang X (2012) Review on recent progress in nitrogen-doped graphene: synthesis, characterization, and its potential applications. ACS Catal 2:781–794
    • (2012) ACS Catal , vol.2 , pp. 781-794
    • Wang, H.1    Maiyalagan, T.2    Wang, X.3
  • 53
    • 79958739975 scopus 로고    scopus 로고
    • Mechanisms of oxygen reduction reaction on nitrogen-doped graphene for fuel cells
    • Zhang L, Xia Z (2011) Mechanisms of oxygen reduction reaction on nitrogen-doped graphene for fuel cells. J Phys Chem C 115:11170–11176
    • (2011) J Phys Chem C , vol.115 , pp. 11170-11176
    • Zhang, L.1    Xia, Z.2
  • 54
    • 71049160081 scopus 로고    scopus 로고
    • Improving platinum catalyst binding energy to graphene through nitrogen doping
    • Groves MN, Chan ASW, Malardier-Jugroot C et al (2009) Improving platinum catalyst binding energy to graphene through nitrogen doping. Chem Phys Lett 481:214–219
    • (2009) Chem Phys Lett , vol.481 , pp. 214-219
    • Groves, M.N.1    Chan, A.S.W.2    Malardier-Jugroot, C.3
  • 56
    • 0039500587 scopus 로고    scopus 로고
    • A review of soft-lead specifications in the light of the requirements of valve-regulated lead/acid batteries
    • Rice DM, Manders JE (1997) A review of soft-lead specifications in the light of the requirements of valve-regulated lead/acid batteries. J Power Sources 67:251–255
    • (1997) J Power Sources , vol.67 , pp. 251-255
    • Rice, D.M.1    Manders, J.E.2
  • 57
    • 0035278335 scopus 로고    scopus 로고
    • The effect and mechanism of bismuth doped lead oxide on the performance of lead–acid batteries
    • Chen HY, Wu L, Ren C et al (2001) The effect and mechanism of bismuth doped lead oxide on the performance of lead–acid batteries. J Power Sources 95:108–118
    • (2001) J Power Sources , vol.95 , pp. 108-118
    • Chen, H.Y.1    Wu, L.2    Ren, C.3
  • 58
    • 0033734630 scopus 로고    scopus 로고
    • Understanding the mechanism by which bismuth improves lead–acid battery capacity
    • Lam LT, Haigh NP, Rand DAJ (2000) Understanding the mechanism by which bismuth improves lead–acid battery capacity. J Power Sources 88:11–17
    • (2000) J Power Sources , vol.88 , pp. 11-17
    • Lam, L.T.1    Haigh, N.P.2    Rand, D.A.J.3
  • 59
    • 84870681946 scopus 로고    scopus 로고
    • The influence of alloying elements on the electrochemistry of lead anodes for electrowinning of metals: a review
    • Clancy M, Bettles CJ, Stuart A et al (2013) The influence of alloying elements on the electrochemistry of lead anodes for electrowinning of metals: a review. Hydrometallurgy 131:144–157
    • (2013) Hydrometallurgy , vol.131 , pp. 144-157
    • Clancy, M.1    Bettles, C.J.2    Stuart, A.3
  • 60
    • 77950020996 scopus 로고    scopus 로고
    • Influence of residual elements in lead on oxygen-and hydrogen-gassing rates of lead–acid batteries
    • Lam LT, Ceylan H, Haigh NP et al (2010) Influence of residual elements in lead on oxygen-and hydrogen-gassing rates of lead–acid batteries. J Power Sources 195:4494–4512
    • (2010) J Power Sources , vol.195 , pp. 4494-4512
    • Lam, L.T.1    Ceylan, H.2    Haigh, N.P.3
  • 61
    • 84991964300 scopus 로고    scopus 로고
    • Pierson JR, Weinlein CE, Wright CE et al (eds) (1975) Power sources, vol 5. Academic Press, London
    • Pierson JR, Weinlein CE, Wright CE et al (eds) (1975) Power sources, vol 5. Academic Press, London
  • 62
    • 84942328057 scopus 로고    scopus 로고
    • Valve-regulated lead-acid batteries
    • Elsevier, Amsterdam
    • Rand DAJ, Garche J, Moseley PT et al (2004) Valve-regulated lead-acid batteries. Elsevier, Amsterdam
    • (2004)
    • Rand, D.A.J.1    Garche, J.2    Moseley, P.T.3
  • 63
    • 19944399738 scopus 로고    scopus 로고
    • Improvements to active material for VRLA batteries
    • Prengaman RD (2005) Improvements to active material for VRLA batteries. J Power Sources 144:426–437
    • (2005) J Power Sources , vol.144 , pp. 426-437
    • Prengaman, R.D.1
  • 64
    • 84885171301 scopus 로고    scopus 로고
    • 3 as negative additives for valve-regulated lead–acid batteries working under high-rate, partial-state-of-charge conditions
    • 3 as negative additives for valve-regulated lead–acid batteries working under high-rate, partial-state-of-charge conditions. J Power Sources 248:1–5
    • (2014) J Power Sources , vol.248 , pp. 1-5
    • Zhao, L.1    Chen, B.2    Wu, J.3
  • 65
    • 84872336336 scopus 로고    scopus 로고
    • Effects of electrochemically active carbon and indium(III) oxide in negative plates on cycle performance of valve-regulated lead–acid batteries during high-rate partial-state-of-charge operation
    • Zhao L, Chen B, Wang D (2013) Effects of electrochemically active carbon and indium(III) oxide in negative plates on cycle performance of valve-regulated lead–acid batteries during high-rate partial-state-of-charge operation. J Power Sources 231:34–38
    • (2013) J Power Sources , vol.231 , pp. 34-38
    • Zhao, L.1    Chen, B.2    Wang, D.3
  • 66
    • 0027132117 scopus 로고
    • On the hydrogen balance in sealed lead/acid batteries and its effect on battery performance
    • Dietz H, Radwan M, Döring H et al (1993) On the hydrogen balance in sealed lead/acid batteries and its effect on battery performance. J Power Sources 42:89–101
    • (1993) J Power Sources , vol.42 , pp. 89-101
    • Dietz, H.1    Radwan, M.2    Döring, H.3


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