7.4 Bioelectrochemical/Biochemical Hydrogen/C1 Economy
127
Fig. 7.3 Schematic concepts of Bioelectrochemical hydrogen/C1 economy. The four redox couples
circled with light blue color have been coupled with electrode reactions. E ⊕ is the biological standard
redox potential
related bioelectrocatalysis will attract lots of attention in near future. The proposed
hydrogen/C1 economy is indeed an environmentally clean, cheap, and sustainable
energy system.
References
1. Yahiro AT, Lee SM, Kimble DO (1964) Bioelectrochemistry: I. Enzyme utilizing bio-fuel cell
studies. Biochim Biophys Acta 88:375–383
2. Xiao X, Xia H, Wu R, Bai L, Yan L, Magner E, Cosnier S, Lojou E, Zhu Z, Liu A (2019)
Tackling the challenges of enzymatic (bio)fuel cells. Chem Rev 119:9509–9558
3. Zhao C-E, Gai P, Song R, Chen Y, Zhang J, Zhu J-J (2017) Nanostructured material-based
biofuel cells: recent advances and future prospects. Chem Soc Rev 46:1545–1564
4. Cosnier S, Gross AJ, Le Goff A, Holzinger M (2016) Recent advances on enzymatic
glucose/oxygen and hydrogen/oxygen biofuel cells: achievements and limitations. J Power
Sources 325:252–263
5. Mazurenko I, Wang X, de Poulpiquet A, Lojou E (2017) H 2 /O 2 Enzymatic fuel cells: from
proof-of-concept to powerful devices. Sustain Energy Fuels 1:1475–1501
6. Mazurenko I, de Poulpiquet A, Lojou E (2017) Recent developments in high surface area
bioelectrodes for enzymatic fuel cells. Curr Opin Electrochem 5:74–84
7. Wen D, Eychmüller A (2016) Enzymatic biofuel cells on porous nanostructures. Small
12:4649–4661
8. Rasmussen M, Abdellaoui S, Minteer SD (2015) Enzymatic biofuel cells: 30 years of critical
advancements. Biosens Bioelectron 76:91–102
9. Cosnier S, Holzinger M, Le Goff A (2014) Recent advances in carbon nanotube-based
enzymatic fuel cells. Front Bioeng Biotechnol 2:45
10. Sakai K, Kitazumi Y, Shirai O, Takagi K, Kano K (2017) High-Power formate/dioxygen biofuel
cell based on mediated electron transfer type bioelectrocatalysis. ACS Catal 7:5668–5673
11. Sakai H, Nakagawa T, Mita H, Kumita H, Tokita Y (2010) Evolution of Sony’s biofuel cell.
In: 217th electrochemical society meeting. Vancouver, Canada, Abstract#396
12. Sakai H, Nakagawa T, Mita H, Matsumoto R, Sugiyama T, Kumita H, Tokita Y, Hatazawa T
(2009) Sony’s biofuel cell. ECS Trans 16:9–15
127
Fig. 7.3 Schematic concepts of Bioelectrochemical hydrogen/C1 economy. The four redox couples
circled with light blue color have been coupled with electrode reactions. E ⊕ is the biological standard
redox potential
related bioelectrocatalysis will attract lots of attention in near future. The proposed
hydrogen/C1 economy is indeed an environmentally clean, cheap, and sustainable
energy system.
References
1. Yahiro AT, Lee SM, Kimble DO (1964) Bioelectrochemistry: I. Enzyme utilizing bio-fuel cell
studies. Biochim Biophys Acta 88:375–383
2. Xiao X, Xia H, Wu R, Bai L, Yan L, Magner E, Cosnier S, Lojou E, Zhu Z, Liu A (2019)
Tackling the challenges of enzymatic (bio)fuel cells. Chem Rev 119:9509–9558
3. Zhao C-E, Gai P, Song R, Chen Y, Zhang J, Zhu J-J (2017) Nanostructured material-based
biofuel cells: recent advances and future prospects. Chem Soc Rev 46:1545–1564
4. Cosnier S, Gross AJ, Le Goff A, Holzinger M (2016) Recent advances on enzymatic
glucose/oxygen and hydrogen/oxygen biofuel cells: achievements and limitations. J Power
Sources 325:252–263
5. Mazurenko I, Wang X, de Poulpiquet A, Lojou E (2017) H 2 /O 2 Enzymatic fuel cells: from
proof-of-concept to powerful devices. Sustain Energy Fuels 1:1475–1501
6. Mazurenko I, de Poulpiquet A, Lojou E (2017) Recent developments in high surface area
bioelectrodes for enzymatic fuel cells. Curr Opin Electrochem 5:74–84
7. Wen D, Eychmüller A (2016) Enzymatic biofuel cells on porous nanostructures. Small
12:4649–4661
8. Rasmussen M, Abdellaoui S, Minteer SD (2015) Enzymatic biofuel cells: 30 years of critical
advancements. Biosens Bioelectron 76:91–102
9. Cosnier S, Holzinger M, Le Goff A (2014) Recent advances in carbon nanotube-based
enzymatic fuel cells. Front Bioeng Biotechnol 2:45
10. Sakai K, Kitazumi Y, Shirai O, Takagi K, Kano K (2017) High-Power formate/dioxygen biofuel
cell based on mediated electron transfer type bioelectrocatalysis. ACS Catal 7:5668–5673
11. Sakai H, Nakagawa T, Mita H, Kumita H, Tokita Y (2010) Evolution of Sony’s biofuel cell.
In: 217th electrochemical society meeting. Vancouver, Canada, Abstract#396
12. Sakai H, Nakagawa T, Mita H, Matsumoto R, Sugiyama T, Kumita H, Tokita Y, Hatazawa T
(2009) Sony’s biofuel cell. ECS Trans 16:9–15
