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2024 | OriginalPaper | Chapter

Electrochemical Approach for Hydrogen Technology: Fundamental Concepts and Materials

Authors : Victor Márquez, Eva Ng, Daniel Torres, Carlos Borrás, Benjamín R. Scharifker, Franco M. Cabrerizo, Lorean Madriz, Ronald Vargas

Published in: Advances in Catalysts Research

Publisher: Springer Nature Switzerland

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Abstract

This chapter presents aspects related to the electrochemical approach to hydrogen technologies, considering key concepts that drive both the thermodynamic and kinetic phenomena of the redox processes involved. Strategies to improve surface processes on various electrode materials are considered. The fundamental approach to the development of applied technologies illustrates the impact on the environment and energy, as well as the role of related physicochemical processes.

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Literature
1.
go back to reference J. O’M. Bockris, Int. J. Hydrog. Energy 38, 2579 (2013) J. O’M. Bockris, Int. J. Hydrog. Energy 38, 2579 (2013)
2.
go back to reference O. Petrii, in, Chemistry, Electrochemistry and Electrochemical Applications | Hydrogen, ed. by J. Garche. Encyclopedia of Electrochemical Power Sources, (Elsevier, 2009), p. 751 O. Petrii, in, Chemistry, Electrochemistry and Electrochemical Applications | Hydrogen, ed. by J. Garche. Encyclopedia of Electrochemical Power Sources, (Elsevier, 2009), p. 751
3.
go back to reference Y. Li, Q. Li, H. Wang, L. Zhang, D. Wilkinson, J. Zhang, Electrochem. Eng. Rev. 2, 518 (2019)CrossRef Y. Li, Q. Li, H. Wang, L. Zhang, D. Wilkinson, J. Zhang, Electrochem. Eng. Rev. 2, 518 (2019)CrossRef
4.
6.
8.
go back to reference OPEC. Monthly Oil Market Report. Mon. Oil. Mark. Rep. 100 (2016). OPEC. Monthly Oil Market Report. Mon. Oil. Mark. Rep. 100 (2016).
9.
go back to reference OPEC. Monthly Oil Market Report. Mon. Oil. Mark. Rep. June 2021 (2021). OPEC. Monthly Oil Market Report. Mon. Oil. Mark. Rep. June 2021 (2021).
10.
go back to reference S. Shiva Kumar, V. Himabindu, Mater. Sci. Eng. Tech. 2, 442 (2019) S. Shiva Kumar, V. Himabindu, Mater. Sci. Eng. Tech. 2, 442 (2019)
11.
go back to reference Q. Lai, Y. Sun, T. Wang, P. Modi, C. Cazorla, U.B. Demirci, J.R. Ares Fernandez, F. Leardini, K-F. Aguey-Zinsou, Adv. Sus. Sys. 3, 1900043 (2019) Q. Lai, Y. Sun, T. Wang, P. Modi, C. Cazorla, U.B. Demirci, J.R. Ares Fernandez, F. Leardini, K-F. Aguey-Zinsou, Adv. Sus. Sys. 3, 1900043 (2019)
12.
13.
go back to reference Directive (EU) 2018/2001 of the European Parliament and of the Council of 11 December 2018 on the promotion of the use of energy from renewable sources. PE/48/2018/REV/1. OJ L 328, 21.12.2018, pp. 82–209 (2018). Directive (EU) 2018/2001 of the European Parliament and of the Council of 11 December 2018 on the promotion of the use of energy from renewable sources. PE/48/2018/REV/1. OJ L 328, 21.12.2018, pp. 82–209 (2018).
14.
go back to reference Z. Yilmazer Hitit, P.C. Hallenbeck, Biomass. Bioeng. 147, 106014 (2021). Z. Yilmazer Hitit, P.C. Hallenbeck, Biomass. Bioeng. 147, 106014 (2021).
15.
go back to reference P. Allulema-Pullupaxi, P.J. Espinoza-Montero, C. Sigcha-Pallo, R. Vargas, L. Fernández, J.M. Peralta-Hernández, J.L. Paz, Chemosphere 281, 130821 (2021)CrossRef P. Allulema-Pullupaxi, P.J. Espinoza-Montero, C. Sigcha-Pallo, R. Vargas, L. Fernández, J.M. Peralta-Hernández, J.L. Paz, Chemosphere 281, 130821 (2021)CrossRef
16.
go back to reference E.N. Aguilera González, S. Estrada Flores, A. Martínez Luévanos, in, Nanomaterials: Recent Advances for Hydrogen Production, ed. by O.V. Kharissova, L.M.T. Martínez, B.I. Kharisov, Handbook of Nanomaterials and Nanocomposites for Energy and Environmental Applications, (Springer, Cham, 2021), p. 1. E.N. Aguilera González, S. Estrada Flores, A. Martínez Luévanos, in, Nanomaterials: Recent Advances for Hydrogen Production, ed. by O.V. Kharissova, L.M.T. Martínez, B.I. Kharisov, Handbook of Nanomaterials and Nanocomposites for Energy and Environmental Applications, (Springer, Cham, 2021), p. 1.
18.
go back to reference K. Scott, in, Introduction to electrolysis, electrolysers and hydrogen production, ed. by K. Scott. Electrochemical Methods for Hydrogen Production, (RSC, 2019), p. 1. K. Scott, in, Introduction to electrolysis, electrolysers and hydrogen production, ed. by K. Scott. Electrochemical Methods for Hydrogen Production, (RSC, 2019), p. 1.
19.
go back to reference P. Millet, S, Grigoriev, in, Water Electrolysis Technologies, ed. by L. M. Gandía, G. Arzamendi, P. M. Diéguez, Renewable Hydrogen Technologies (Elsevier, 2013), p. 19. P. Millet, S, Grigoriev, in, Water Electrolysis Technologies, ed. by L. M. Gandía, G. Arzamendi, P. M. Diéguez, Renewable Hydrogen Technologies (Elsevier, 2013), p. 19.
20.
go back to reference J.T.S. Irvine, D. Neagu, M.C. Verbraeken, Ch. Chatzichristodoulou, Ch. Graves, M.B. Mogensen, Nat. Energy 1, 15014 (2016)CrossRef J.T.S. Irvine, D. Neagu, M.C. Verbraeken, Ch. Chatzichristodoulou, Ch. Graves, M.B. Mogensen, Nat. Energy 1, 15014 (2016)CrossRef
22.
24.
go back to reference P. Yu, F. Wang, T. Ahmed Shifa, X. Zhang, X. Lou, F. Xia, J. He, Nano. Eng. 58, 244 (2019). P. Yu, F. Wang, T. Ahmed Shifa, X. Zhang, X. Lou, F. Xia, J. He, Nano. Eng. 58, 244 (2019).
25.
go back to reference M. Inci, M. Buyuk, M. Hakan Demir, G. Ilbey, Rene. Sus. Eng. Rev. 137, 110648 (2021). M. Inci, M. Buyuk, M. Hakan Demir, G. Ilbey, Rene. Sus. Eng. Rev. 137, 110648 (2021).
26.
go back to reference T. Roach, M. Schmitz, V. Leach, M. Miller, B. Chan, S. Kalman, J. Organomet. Chem. 873, 8 (2018)CrossRef T. Roach, M. Schmitz, V. Leach, M. Miller, B. Chan, S. Kalman, J. Organomet. Chem. 873, 8 (2018)CrossRef
27.
go back to reference Y. Cai, F. Li, Y.-Q. Li, W.-B. Zhang, F.-H. Liu, S.-L. Shi, Tetrahedron Lett. 59, 1079 (2018)CrossRef Y. Cai, F. Li, Y.-Q. Li, W.-B. Zhang, F.-H. Liu, S.-L. Shi, Tetrahedron Lett. 59, 1079 (2018)CrossRef
28.
go back to reference B.M. Trost, in, Atom economy: challenge for enhanced synthetic efficiency, ed. by P. Anastas. Handbook of green chemistry, (Wiley, 2010) p. 1. B.M. Trost, in, Atom economy: challenge for enhanced synthetic efficiency, ed. by P. Anastas. Handbook of green chemistry, (Wiley, 2010) p. 1.
30.
31.
go back to reference B.P. Chaplin, M. Reinhard, W.F. Schneider, Ch. Schuth, J.R. Shapley, T.J. Strathmann, Ch.J. Werth, Environ. Sci. Technol. 46, 3655 (2012)PubMedCrossRef B.P. Chaplin, M. Reinhard, W.F. Schneider, Ch. Schuth, J.R. Shapley, T.J. Strathmann, Ch.J. Werth, Environ. Sci. Technol. 46, 3655 (2012)PubMedCrossRef
32.
33.
36.
37.
go back to reference P. Sabatier, Ber. Deutsch. Gem. Ges. 44, 1984 (1911) P. Sabatier, Ber. Deutsch. Gem. Ges. 44, 1984 (1911)
38.
go back to reference H. Ooka, J. Huang, K.S. Exner, Front. Eng. Res. 9, 1 (2021) H. Ooka, J. Huang, K.S. Exner, Front. Eng. Res. 9, 1 (2021)
40.
go back to reference T. Volmer, M. Erdey-Gruz, Z. Phys, Chem. 150, 203 (1930) T. Volmer, M. Erdey-Gruz, Z. Phys, Chem. 150, 203 (1930)
41.
go back to reference S. Trasatti, in, Electrocatalysis of hydrogen evolution: Progress in cathode activation, ed. by H. Gerischer, Ch.W. Tobias. Advances in Electrochemical Science and Engineering, (Wiley-VCH, 1992), pp. 1–85. S. Trasatti, in, Electrocatalysis of hydrogen evolution: Progress in cathode activation, ed. by H. Gerischer, Ch.W. Tobias. Advances in Electrochemical Science and Engineering, (Wiley-VCH, 1992), pp. 1–85.
42.
43.
go back to reference H. Kobosew, P. Nekrassow, Z. Elektrochem. 30, 529 (1930) H. Kobosew, P. Nekrassow, Z. Elektrochem. 30, 529 (1930)
45.
go back to reference D. Pletcher, R. Greff. R. Peat, L.M. Peter, J. Robinson, 1st ed, Instrumental Methods in Electrochemistry, (Ellis Horwood Serie in Physical Chemistry, 2001), pp. 229–250 D. Pletcher, R. Greff. R. Peat, L.M. Peter, J. Robinson, 1st ed, Instrumental Methods in Electrochemistry, (Ellis Horwood Serie in Physical Chemistry, 2001), pp. 229–250
47.
go back to reference M. Duca, M. Koper, in, Fundamentals Aspects of Electrocatalysis, ed. by K. Wandelt. Surface and Interface Science: Interfacial Electrochemistry, (Wiley-VCH, 2020), pp. 773–890. M. Duca, M. Koper, in, Fundamentals Aspects of Electrocatalysis, ed. by K. Wandelt. Surface and Interface Science: Interfacial Electrochemistry, (Wiley-VCH, 2020), pp. 773–890.
48.
50.
go back to reference J. Novak Hansen, H. Prats, K. Krojer Toudahl, N. Morch Secher, K. Chan, J. Kibsgaard, I. Chorkendorff, ACS. Eng. Lett. 6, 1175 (2021). J. Novak Hansen, H. Prats, K. Krojer Toudahl, N. Morch Secher, K. Chan, J. Kibsgaard, I. Chorkendorff, ACS. Eng. Lett. 6, 1175 (2021).
51.
go back to reference E. Fachinotti, E. Guerrini, A.C. Tavares, S. Trasatti, J. Electroanal. Chem. 600, 103 (2007)CrossRef E. Fachinotti, E. Guerrini, A.C. Tavares, S. Trasatti, J. Electroanal. Chem. 600, 103 (2007)CrossRef
52.
go back to reference D. Pletcher. X. Li, S. Wang, Int. J. Hydrog. Energy 37, 7429 (2012). D. Pletcher. X. Li, S. Wang, Int. J. Hydrog. Energy 37, 7429 (2012).
53.
go back to reference J. Callejas, C. Read, Ch. Roske, N. Lewis, R. Schaak, Chem. Mater. 28, 6017 (2016)CrossRef J. Callejas, C. Read, Ch. Roske, N. Lewis, R. Schaak, Chem. Mater. 28, 6017 (2016)CrossRef
54.
go back to reference B. Hinnermann, P.G. Moses, J. Bonde, P. Jogersen, J.H. Nielsen, S. Horch, I. Chorkendorff, J.K. Norskov, J. Am. Chem. Soc. 127, 5308 (2005)CrossRef B. Hinnermann, P.G. Moses, J. Bonde, P. Jogersen, J.H. Nielsen, S. Horch, I. Chorkendorff, J.K. Norskov, J. Am. Chem. Soc. 127, 5308 (2005)CrossRef
55.
56.
go back to reference F. Keivanimehr, S. Habibzadeh, A. Baghban, A. Esmaeli, A. Mohaddespour, A.H. Mashhadzadeh, M. Reza Ganjali, M. Reza Saeb, V. Fierro, A. Celzard, Sci. Rep. 11, 3958 (2021). F. Keivanimehr, S. Habibzadeh, A. Baghban, A. Esmaeli, A. Mohaddespour, A.H. Mashhadzadeh, M. Reza Ganjali, M. Reza Saeb, V. Fierro, A. Celzard, Sci. Rep. 11, 3958 (2021).
57.
go back to reference Y. Liu, X. Xu, H. Li, Z. Si, X. Wu, R. Ran, D. Weng, Catal. Lett. (2021). Y. Liu, X. Xu, H. Li, Z. Si, X. Wu, R. Ran, D. Weng, Catal. Lett. (2021).
59.
go back to reference T.F. Jaramillo, K.P. Jørgensen, J. Bonde, J.H. Nielsen, S. Horch, I. Chorkendorff, Science 317, 100 (2007)PubMedCrossRef T.F. Jaramillo, K.P. Jørgensen, J. Bonde, J.H. Nielsen, S. Horch, I. Chorkendorff, Science 317, 100 (2007)PubMedCrossRef
61.
62.
go back to reference A.R. Zeradjanin, P. Narangoda, I. Spanos, J. Masa, R. Schlögl, Electrochim. Acta 388, 138583 (2021)CrossRef A.R. Zeradjanin, P. Narangoda, I. Spanos, J. Masa, R. Schlögl, Electrochim. Acta 388, 138583 (2021)CrossRef
63.
go back to reference V. Márquez, J.S. Santos, J.G. Buijnsters, S. Praserthdam, P. Praserthdam, Electrochim. Acta 410, 139972 (2022)CrossRef V. Márquez, J.S. Santos, J.G. Buijnsters, S. Praserthdam, P. Praserthdam, Electrochim. Acta 410, 139972 (2022)CrossRef
65.
go back to reference J.K. Nørskov, T. Bligaard, L. Ashildur, J.R. Kitchin, J.G. Chen, S. Pandelov, U. Stimming, J. Electrochem. Soc. 152, J23 (2005)CrossRef J.K. Nørskov, T. Bligaard, L. Ashildur, J.R. Kitchin, J.G. Chen, S. Pandelov, U. Stimming, J. Electrochem. Soc. 152, J23 (2005)CrossRef
66.
go back to reference A.R. Zeradjanin, G. Polymeros, C. Toparli, M. Ledendecker, N. Hodnik, A. Erbe, M. A.R. Zeradjanin, G. Polymeros, C. Toparli, M. Ledendecker, N. Hodnik, A. Erbe, M.
67.
68.
go back to reference L. Rebollar, S. Intikhab, N.J. Oliveira, Y. Yan, B. Xu, I.T. McCrum, J.D. Snyder, M.H. Tang, ACS Catal. 10, 14747 (2020)CrossRef L. Rebollar, S. Intikhab, N.J. Oliveira, Y. Yan, B. Xu, I.T. McCrum, J.D. Snyder, M.H. Tang, ACS Catal. 10, 14747 (2020)CrossRef
72.
73.
go back to reference M.H. Miles, G. Kissel, P.W.T. Lu, S. Srinivasan, J. Electrochem. Soc. 123, 332 (1976)CrossRef M.H. Miles, G. Kissel, P.W.T. Lu, S. Srinivasan, J. Electrochem. Soc. 123, 332 (1976)CrossRef
75.
go back to reference T. Zheng, W. Sang, Z. He, Q. Wei, B. Chen, H. Li, C. Cao, R. Huang, X. Yan, B. Pan, S. Zhou, J. Zeng, Nano Lett. 17, 7968 (2017)PubMedCrossRef T. Zheng, W. Sang, Z. He, Q. Wei, B. Chen, H. Li, C. Cao, R. Huang, X. Yan, B. Pan, S. Zhou, J. Zeng, Nano Lett. 17, 7968 (2017)PubMedCrossRef
76.
go back to reference D. Su, J. Wang, H. Jin, Y. Gong, M. Li, Z. Pang, Y. Wang, J. Mater. Chem. A 3, 11756 (2015)CrossRef D. Su, J. Wang, H. Jin, Y. Gong, M. Li, Z. Pang, Y. Wang, J. Mater. Chem. A 3, 11756 (2015)CrossRef
77.
go back to reference J.M. Jaksic, M.V. Vojnovic, N.V. Krstajic, Electrochim. Acta 45, 4151 (2000)CrossRef J.M. Jaksic, M.V. Vojnovic, N.V. Krstajic, Electrochim. Acta 45, 4151 (2000)CrossRef
78.
79.
go back to reference H. Dumond, P. Los, A. Lasia, H. Ménard, J. Appl. Electrochem. 23, 684 (1993) H. Dumond, P. Los, A. Lasia, H. Ménard, J. Appl. Electrochem. 23, 684 (1993)
80.
81.
82.
go back to reference L.F. Pan, Y.H. Li, S. Yang, P.F. Liu, M.Q. Yu, H.G. Yang, Chem. Commun. 50, 13135 (2014)CrossRef L.F. Pan, Y.H. Li, S. Yang, P.F. Liu, M.Q. Yu, H.G. Yang, Chem. Commun. 50, 13135 (2014)CrossRef
83.
go back to reference S. Gupta, N. Patel, R. Fernandes, R. Kadrekar, A. Dashora, A.K. Yadav, D. Bhattacharyya, S.N. Jha, A. MiotelloD, C. Kothari, Appl. Catal. B 192, 126 (2016)CrossRef S. Gupta, N. Patel, R. Fernandes, R. Kadrekar, A. Dashora, A.K. Yadav, D. Bhattacharyya, S.N. Jha, A. MiotelloD, C. Kothari, Appl. Catal. B 192, 126 (2016)CrossRef
84.
go back to reference X. Wang, W. Li, D. Xiong, D.Y. Petrovykh, L. Liu, Adv. Funct. Mater. 26, 4067 (2016)CrossRef X. Wang, W. Li, D. Xiong, D.Y. Petrovykh, L. Liu, Adv. Funct. Mater. 26, 4067 (2016)CrossRef
85.
go back to reference Z. Jin, P. Li, X. Huang, G. Zeng, Y. Jin, B. Zheng, D. Xiao, J. Mater. Chem. A 2, 18593 (2014)CrossRef Z. Jin, P. Li, X. Huang, G. Zeng, Y. Jin, B. Zheng, D. Xiao, J. Mater. Chem. A 2, 18593 (2014)CrossRef
86.
go back to reference A.B. Laursen, R.B. Wexler, M.J. Whitaker, E.J. Izett, K.U.D. Calvinho, S. Hwang, R. Rucker, H. Wang, J. Li, E. Garfunkel, M. Greenblatt, A.M. Rappe, C. Dismukes, ACS Catal. 8, 4408 (2018)CrossRef A.B. Laursen, R.B. Wexler, M.J. Whitaker, E.J. Izett, K.U.D. Calvinho, S. Hwang, R. Rucker, H. Wang, J. Li, E. Garfunkel, M. Greenblatt, A.M. Rappe, C. Dismukes, ACS Catal. 8, 4408 (2018)CrossRef
87.
go back to reference J.F. Callejas, C.G. Read, E.J. Popczun, J.M. McEnaney, R.E. Schaak, Chem. Mater. 27, 3769 (2015)CrossRef J.F. Callejas, C.G. Read, E.J. Popczun, J.M. McEnaney, R.E. Schaak, Chem. Mater. 27, 3769 (2015)CrossRef
88.
go back to reference D.E. Schipper, Z. Zhao, H. Thirumalai, A.P. Leitner, S.L. Donaldson, A. Kumar, F. Qin, Z. Wang, L.C. Grabow, J. Bao, K.H. Whitmire, Chem. Mater. 30, 3588 (2018)CrossRef D.E. Schipper, Z. Zhao, H. Thirumalai, A.P. Leitner, S.L. Donaldson, A. Kumar, F. Qin, Z. Wang, L.C. Grabow, J. Bao, K.H. Whitmire, Chem. Mater. 30, 3588 (2018)CrossRef
89.
go back to reference J.M. McEnaney, J.C. Crompton, J.F. Callejas, E.J. Popczun, A.J. Biacchi, N.S. Lewis, R.E. Schaak, Chem. Mater. 26, 4826 (2014)CrossRef J.M. McEnaney, J.C. Crompton, J.F. Callejas, E.J. Popczun, A.J. Biacchi, N.S. Lewis, R.E. Schaak, Chem. Mater. 26, 4826 (2014)CrossRef
90.
go back to reference X. Zhang, X. Yu, L. Zhang, F. Zhou, Y. Liang, R. Wang, Adv. Funct. Mater. 28, 1706523 (2018)CrossRef X. Zhang, X. Yu, L. Zhang, F. Zhou, Y. Liang, R. Wang, Adv. Funct. Mater. 28, 1706523 (2018)CrossRef
91.
go back to reference C. Tang, L. Gan, R. Zhang, W. Lu, X. Jiang, A.M. Asiri, X. Sun, J. Wang, L. Chen, Nano Lett. 16, 6617 (2016)PubMedCrossRef C. Tang, L. Gan, R. Zhang, W. Lu, X. Jiang, A.M. Asiri, X. Sun, J. Wang, L. Chen, Nano Lett. 16, 6617 (2016)PubMedCrossRef
92.
go back to reference R. Zhang, X. Wang, S. Yu, T. Wen, X. Zhu, F. Yang, X. Sun, X. Wang, W. Hu, Adv. Mater. 29, 1605502 (2016)CrossRef R. Zhang, X. Wang, S. Yu, T. Wen, X. Zhu, F. Yang, X. Sun, X. Wang, W. Hu, Adv. Mater. 29, 1605502 (2016)CrossRef
93.
go back to reference W. Cui, Q. Liu, N.Y. Cheng, A.M. Asiri, X.P. Sun, Chem. Commun. 50, 9340 (2014)CrossRef W. Cui, Q. Liu, N.Y. Cheng, A.M. Asiri, X.P. Sun, Chem. Commun. 50, 9340 (2014)CrossRef
94.
go back to reference Y. Ito, W. Cong, T. Fujita, Z. Tang, M. Chen, Angew. Chem. Int. Ed. 54, 2131 (2014)CrossRef Y. Ito, W. Cong, T. Fujita, Z. Tang, M. Chen, Angew. Chem. Int. Ed. 54, 2131 (2014)CrossRef
95.
go back to reference Y. Zhao, F. Zhao, X. Wang, C. Xu, Z. Zhang, G. Shi, L. Qu, Angew. Chem. Int. Ed. 53, 13934 (2014)CrossRef Y. Zhao, F. Zhao, X. Wang, C. Xu, Z. Zhang, G. Shi, L. Qu, Angew. Chem. Int. Ed. 53, 13934 (2014)CrossRef
96.
go back to reference H. Du, R.-M. Kong, X. Guo, F. Qu, J. Li, Nanoscale 10, 2018 (2018) H. Du, R.-M. Kong, X. Guo, F. Qu, J. Li, Nanoscale 10, 2018 (2018)
97.
go back to reference A. Parra-Puerto, K. Ling Ng, K. Fahy, A.E. Goode, M.P. Ryan, A. Kucernak, ACS Catal. 9, 11515 (2019). A. Parra-Puerto, K. Ling Ng, K. Fahy, A.E. Goode, M.P. Ryan, A. Kucernak, ACS Catal. 9, 11515 (2019).
101.
go back to reference E. Popczun, J. McKone, C. Read, A. Biacchi, A. Wiltrout, N. Lewis, R. Schaak, J. Am. Chem. Soc. 135, 9267 (2013)PubMedCrossRef E. Popczun, J. McKone, C. Read, A. Biacchi, A. Wiltrout, N. Lewis, R. Schaak, J. Am. Chem. Soc. 135, 9267 (2013)PubMedCrossRef
102.
go back to reference Y. Shi, M. Li, Y. Yu, B. Zhang, Eng. Environ. Sci. 13, 4564 (2020) Y. Shi, M. Li, Y. Yu, B. Zhang, Eng. Environ. Sci. 13, 4564 (2020)
104.
105.
go back to reference Y. Pei, Y. Yang, F. Zhang, P. Dong, R. Baines, Y. Ge, H. Chu, P. Ajayan, J. Shen, M. Ye, A.C.S. Appl, Mater. Interfaces. 9, 31887 (2017)CrossRef Y. Pei, Y. Yang, F. Zhang, P. Dong, R. Baines, Y. Ge, H. Chu, P. Ajayan, J. Shen, M. Ye, A.C.S. Appl, Mater. Interfaces. 9, 31887 (2017)CrossRef
106.
go back to reference M. Bernal Lopez, J. Ustarroz, Curr. Op. Electrochem. 27, 100688 (2021). M. Bernal Lopez, J. Ustarroz, Curr. Op. Electrochem. 27, 100688 (2021).
107.
go back to reference D. Torres, L. Madriz, R. Vargas, B.R. Scharifker, Electrochim. Acta 354, 136705 (2020)CrossRef D. Torres, L. Madriz, R. Vargas, B.R. Scharifker, Electrochim. Acta 354, 136705 (2020)CrossRef
108.
go back to reference M.A.V. Devanathan, Z. Stachurski, Proc. Royal. Soc. London. Serie. A, Math. Phys. Sci. 270, 90 (1962). M.A.V. Devanathan, Z. Stachurski, Proc. Royal. Soc. London. Serie. A, Math. Phys. Sci. 270, 90 (1962).
110.
go back to reference J. A. Puszkiel, in, Tailoring the Kinetic Behavior of Hydride Forming Materials for Hydrogen Storage, ed. by M. Rahman, A. M. Asiri. Gold Nanoparticles - Reaching New Heights, (IntechOpen, 2018), pp. 1–31. J. A. Puszkiel, in, Tailoring the Kinetic Behavior of Hydride Forming Materials for Hydrogen Storage, ed. by M. Rahman, A. M. Asiri. Gold Nanoparticles - Reaching New Heights, (IntechOpen, 2018), pp. 1–31.
111.
112.
113.
go back to reference M. Ghiyasiyan-Arani, M. Salavati-Niasari, A.F. Zonouz, J. Electrochem. Soc. 167, 020544 (2020)CrossRef M. Ghiyasiyan-Arani, M. Salavati-Niasari, A.F. Zonouz, J. Electrochem. Soc. 167, 020544 (2020)CrossRef
114.
go back to reference M. Baladi, M. Valian, M. Ghiyasiyan-Arani, M. Salavati-Niasari, Int. J. Hydrog. Energy 46, 21026 (2021)CrossRef M. Baladi, M. Valian, M. Ghiyasiyan-Arani, M. Salavati-Niasari, Int. J. Hydrog. Energy 46, 21026 (2021)CrossRef
115.
117.
118.
go back to reference Q. Luo, X.-H. An, Y.-B. Pan, X. Zhang, J.-Y. Zhang, Q. Li, Int. J. Hydrog. Energy 35, 7842 (2010)CrossRef Q. Luo, X.-H. An, Y.-B. Pan, X. Zhang, J.-Y. Zhang, Q. Li, Int. J. Hydrog. Energy 35, 7842 (2010)CrossRef
121.
122.
go back to reference I. Suárez, C. Borrás, B.R. Scharifker, J. Mostany, in, Diffusion in solids: Hydrogen transport in massive and microdispersed palladium, ed. by M. Palomar-Pardavé, M. Romero-Romo, Electrochemical and Materials Engineering, (Research Signpost, 2007), p. 173. I. Suárez, C. Borrás, B.R. Scharifker, J. Mostany, in, Diffusion in solids: Hydrogen transport in massive and microdispersed palladium, ed. by M. Palomar-Pardavé, M. Romero-Romo, Electrochemical and Materials Engineering, (Research Signpost, 2007), p. 173.
123.
124.
go back to reference D. Fermín, F. Marken, in, Introduction to the electrochemical and photo-electrochemical reduction of CO2, ed. by F. Marken, F. Fermín. Electrochemical reduction of carbon dioxide: Overcoming the limitations of photosynthesis, (RSC, 2018), pp. 1–16. D. Fermín, F. Marken, in, Introduction to the electrochemical and photo-electrochemical reduction of CO2, ed. by F. Marken, F. Fermín. Electrochemical reduction of carbon dioxide: Overcoming the limitations of photosynthesis, (RSC, 2018), pp. 1–16.
125.
go back to reference A. Perez, M.A. Díaz-Pérez, J. Serrano, Catalysis. 10, 1179 (2020) A. Perez, M.A. Díaz-Pérez, J. Serrano, Catalysis. 10, 1179 (2020)
126.
go back to reference S. García-Segura, M. Lanzarini-López, K. Hristovski, P. Westerhoff, App. Catal. B. Environ. 236, 546 (2018)CrossRef S. García-Segura, M. Lanzarini-López, K. Hristovski, P. Westerhoff, App. Catal. B. Environ. 236, 546 (2018)CrossRef
127.
go back to reference C. Ovalles, I. Rojas, S. Acevedo, G. Escobar, G. Jorge, L.B. Gutierrez, A. Rincón, B.R. Scharifker, Fuel. Proc. Technol. 48, 159 (1996)CrossRef C. Ovalles, I. Rojas, S. Acevedo, G. Escobar, G. Jorge, L.B. Gutierrez, A. Rincón, B.R. Scharifker, Fuel. Proc. Technol. 48, 159 (1996)CrossRef
128.
go back to reference J.M. Chapuzet, A. Lascia, L. Lessard, in, Electrocatalytic hydrogenation of organic compounds, ed. by J. Lipkowski, P. Ross. Electrocatalysis, (Wiley-VCH, 1998), pp. 155–196. J.M. Chapuzet, A. Lascia, L. Lessard, in, Electrocatalytic hydrogenation of organic compounds, ed. by J. Lipkowski, P. Ross. Electrocatalysis, (Wiley-VCH, 1998), pp. 155–196.
129.
130.
go back to reference B. Pauw, W. Kalisvaart, S. Tao, M. Koper, A. Jansen, P. Notten, Acta Mater. 56, 2948 (2008)CrossRef B. Pauw, W. Kalisvaart, S. Tao, M. Koper, A. Jansen, P. Notten, Acta Mater. 56, 2948 (2008)CrossRef
131.
132.
go back to reference C. González-Buch, I. Herraiz-Cardona, E. Ortega, J. García-Antón, V. Pérez-Herranz, J. App. Electrochem. 46, 791 (2016)CrossRef C. González-Buch, I. Herraiz-Cardona, E. Ortega, J. García-Antón, V. Pérez-Herranz, J. App. Electrochem. 46, 791 (2016)CrossRef
133.
go back to reference L. Madriz, H. Carrero, J.R. Domínguez, R. Vargas, L. Fernández, Fuel 112, 338 (2013)CrossRef L. Madriz, H. Carrero, J.R. Domínguez, R. Vargas, L. Fernández, Fuel 112, 338 (2013)CrossRef
134.
go back to reference J. Hwan Kim, J. Kim, H. Kim, J. Kim, S. Hyun Ahn, J. Ind. Eng. Chem. 79, 255 (2019). J. Hwan Kim, J. Kim, H. Kim, J. Kim, S. Hyun Ahn, J. Ind. Eng. Chem. 79, 255 (2019).
135.
go back to reference B. Cantor, I.T.H. Chang, P. Knight, A.J.B. Vincent, Mater. Sci. Eng. A 375–377, 213 (2004)CrossRef B. Cantor, I.T.H. Chang, P. Knight, A.J.B. Vincent, Mater. Sci. Eng. A 375–377, 213 (2004)CrossRef
136.
go back to reference J.W. Yeh, S.K. Chen, S.J. Lin, J.Y. Gan, T.S. Chin, T.T. Shun, C.H. Tsau, S.Y. Chang, Adv. Eng. Mater. 6, 299 (2004)CrossRef J.W. Yeh, S.K. Chen, S.J. Lin, J.Y. Gan, T.S. Chin, T.T. Shun, C.H. Tsau, S.Y. Chang, Adv. Eng. Mater. 6, 299 (2004)CrossRef
140.
141.
go back to reference S. Li, X. Tang, H. Jia, H. Li, G. Xie, X. Liu, X. Lin, H.-Q. Qui, J. Catal. 383, 164 (2020)CrossRef S. Li, X. Tang, H. Jia, H. Li, G. Xie, X. Liu, X. Lin, H.-Q. Qui, J. Catal. 383, 164 (2020)CrossRef
142.
go back to reference D. Karlsson, G. Ek, J. Cedervall, C. Zlotea, K. Moller, T. Hanse, J. Bendnarcik, M. Paskevicius, M.H. Sorby, T,R. Jensen, U. Jansoon, M. Sahlberg, Inorg. Chem. 57, 2103 (2018). D. Karlsson, G. Ek, J. Cedervall, C. Zlotea, K. Moller, T. Hanse, J. Bendnarcik, M. Paskevicius, M.H. Sorby, T,R. Jensen, U. Jansoon, M. Sahlberg, Inorg. Chem. 57, 2103 (2018).
143.
go back to reference G. Ek, M. Nygard, A. Pavan, J. Montero, P. Henry, M.H. Sorby, M. Witman, V. Stavila, C. Zlotea, B. Hauback, M. Sahlberg, Inorg. Chem. 60, 1124 (2021)PubMedCrossRef G. Ek, M. Nygard, A. Pavan, J. Montero, P. Henry, M.H. Sorby, M. Witman, V. Stavila, C. Zlotea, B. Hauback, M. Sahlberg, Inorg. Chem. 60, 1124 (2021)PubMedCrossRef
144.
go back to reference Q. Yang, G. Wang, H. Wu, B.A. Beshiwork, D. Tian, S. Zhu, Y. Yang, X. Lu, Y. Ding, Y. Ling, Y. Chen, B. Lin, J. Alloys Compd. 872, 159633 (2021)CrossRef Q. Yang, G. Wang, H. Wu, B.A. Beshiwork, D. Tian, S. Zhu, Y. Yang, X. Lu, Y. Ding, Y. Ling, Y. Chen, B. Lin, J. Alloys Compd. 872, 159633 (2021)CrossRef
145.
go back to reference A.A. Kulikovsky, 2nd ed, Analytical Modelling of Fuel Cells, (Elsevier, 2019), pp. 1–33. A.A. Kulikovsky, 2nd ed, Analytical Modelling of Fuel Cells, (Elsevier, 2019), pp. 1–33.
146.
148.
go back to reference R.M. Dell, P.T. Moseley, D.A.J. Rand, 1st ed, Towards Sustainable Road Transport, (Academic Press, 2014), pp. 260–295. R.M. Dell, P.T. Moseley, D.A.J. Rand, 1st ed, Towards Sustainable Road Transport, (Academic Press, 2014), pp. 260–295.
149.
go back to reference A. Kirubakaran, Sh. Jain, R.K. Nema, Renew. Sustain. Energy Rev. 13, 2430 (2009)CrossRef A. Kirubakaran, Sh. Jain, R.K. Nema, Renew. Sustain. Energy Rev. 13, 2430 (2009)CrossRef
150.
go back to reference B. Timurkutluk, C. Timurkutluk, M.D. Mat, Y. Kaplan, Renew. Sus. Energy Rev. 56, 1101 (2016)CrossRef B. Timurkutluk, C. Timurkutluk, M.D. Mat, Y. Kaplan, Renew. Sus. Energy Rev. 56, 1101 (2016)CrossRef
151.
go back to reference I.T. Bello, Sh. Zhai, Q. He, Ch. Cheng, Y. Dai, B. Chen, Y. Zhang, M. Ni, Int. J. Energy Res. 46, 2212 (2022)CrossRef I.T. Bello, Sh. Zhai, Q. He, Ch. Cheng, Y. Dai, B. Chen, Y. Zhang, M. Ni, Int. J. Energy Res. 46, 2212 (2022)CrossRef
152.
154.
go back to reference J.O`M. Bockris, S.U.M. Khan, 1st ed, Surface Electrochemistry A Molecular Level Approach, (Springer Science + Business Media, LLC, 1993), pp. 861–926. J.O`M. Bockris, S.U.M. Khan, 1st ed, Surface Electrochemistry A Molecular Level Approach, (Springer Science + Business Media, LLC, 1993), pp. 861–926.
155.
go back to reference F. Barbir, 2nd ed, PEM Fuel Cell: Theory and Practice, (Elsevier, 2012), pp. 33–72. F. Barbir, 2nd ed, PEM Fuel Cell: Theory and Practice, (Elsevier, 2012), pp. 33–72.
156.
go back to reference C.C. Boyer, R.G. Anthony, A.J. Appleby, J. App. Electrochem. 30, 777 (2000)CrossRef C.C. Boyer, R.G. Anthony, A.J. Appleby, J. App. Electrochem. 30, 777 (2000)CrossRef
158.
go back to reference S. Beale, M. Andersson, C. Boigues-Muñoz, H. Frandsen, Z. Lin, S. McPhail, M. Ni, B. Sundén, A. Weber, A.Z. Weber, Prog. Eng, Comb. Sci. 85, 100902 (2021). S. Beale, M. Andersson, C. Boigues-Muñoz, H. Frandsen, Z. Lin, S. McPhail, M. Ni, B. Sundén, A. Weber, A.Z. Weber, Prog. Eng, Comb. Sci. 85, 100902 (2021).
159.
160.
go back to reference C. Pacheco, R. Barbosa, L.C. Ordoñez, J. Sierr, B. Escobar, Int. J. Hydrog. Energy 51, 26197 (2021)CrossRef C. Pacheco, R. Barbosa, L.C. Ordoñez, J. Sierr, B. Escobar, Int. J. Hydrog. Energy 51, 26197 (2021)CrossRef
161.
go back to reference K. Jiao, J. Xuan, Q. Du, Z. Bao, B. Xie, B. Wang, Y. Zhao, L. Fan, H. Wang, Z. Hou, S. Hou, N.P. Brandon, Y. Yin, M.D. Guiver, Nature 595, 361 (2021)PubMedCrossRef K. Jiao, J. Xuan, Q. Du, Z. Bao, B. Xie, B. Wang, Y. Zhao, L. Fan, H. Wang, Z. Hou, S. Hou, N.P. Brandon, Y. Yin, M.D. Guiver, Nature 595, 361 (2021)PubMedCrossRef
162.
go back to reference L. Botello, J. Feliú, V. Climent, App. Mater. Interfaces. 12, 42911 (2020)CrossRef L. Botello, J. Feliú, V. Climent, App. Mater. Interfaces. 12, 42911 (2020)CrossRef
163.
go back to reference M. Palomar-Pardavé, B.R. Scharifker, E.M. Arce, M. Romero-Romo, Electrochim. Acta 50, 4736 (2005)CrossRef M. Palomar-Pardavé, B.R. Scharifker, E.M. Arce, M. Romero-Romo, Electrochim. Acta 50, 4736 (2005)CrossRef
164.
go back to reference Q. Wang, Z.L. Zhao, S. Dong, D. He, M.J. Lawrence, S. Han, C. Cai, S. Xiang, P. Rodriguez, B. Xiang, Z. Wang, Y. Liang, M. Gu, Nano Eng. 53, 458 (2018) Q. Wang, Z.L. Zhao, S. Dong, D. He, M.J. Lawrence, S. Han, C. Cai, S. Xiang, P. Rodriguez, B. Xiang, Z. Wang, Y. Liang, M. Gu, Nano Eng. 53, 458 (2018)
165.
go back to reference S. Hadimane, S. Aralekallu, K. Prabhu, M. Hojamberdiev, L.K. Sannegowda, ACS Appl. Eng. Mater. 4(10), 10826 (2021)CrossRef S. Hadimane, S. Aralekallu, K. Prabhu, M. Hojamberdiev, L.K. Sannegowda, ACS Appl. Eng. Mater. 4(10), 10826 (2021)CrossRef
167.
go back to reference L. Madriz, J. Tatá, D. Carvajal, O. Núñez, B.R. Scharifker, J. Mostany, C. Borrás, F.M. Cabrerizo, R. Vargas, Renew. Energy 152, 974 (2020)CrossRef L. Madriz, J. Tatá, D. Carvajal, O. Núñez, B.R. Scharifker, J. Mostany, C. Borrás, F.M. Cabrerizo, R. Vargas, Renew. Energy 152, 974 (2020)CrossRef
168.
go back to reference H. Rueda, M. Arenas, R. Vargas-Balda, S. Blanco, P. Delvasto, Sustain. Mater. Technol. 29, e00296 (2021) H. Rueda, M. Arenas, R. Vargas-Balda, S. Blanco, P. Delvasto, Sustain. Mater. Technol. 29, e00296 (2021)
170.
go back to reference M. Ostadi, K.G. Paso, S. Rodruiguez-Fabia, L.E. Oi, F. Manenti, M. Hillestad, Energies 13, 4859 (2020)CrossRef M. Ostadi, K.G. Paso, S. Rodruiguez-Fabia, L.E. Oi, F. Manenti, M. Hillestad, Energies 13, 4859 (2020)CrossRef
171.
go back to reference M. Yue, H. Lambert, E. Pahon, R. Roche, S. Jemei, D. Hissel, Renew. Sus. Energy. Rev. 146, 111180 (2021)CrossRef M. Yue, H. Lambert, E. Pahon, R. Roche, S. Jemei, D. Hissel, Renew. Sus. Energy. Rev. 146, 111180 (2021)CrossRef
Metadata
Title
Electrochemical Approach for Hydrogen Technology: Fundamental Concepts and Materials
Authors
Victor Márquez
Eva Ng
Daniel Torres
Carlos Borrás
Benjamín R. Scharifker
Franco M. Cabrerizo
Lorean Madriz
Ronald Vargas
Copyright Year
2024
DOI
https://doi.org/10.1007/978-3-031-49108-5_10