128
7 Applications to Biofuel Cells and Bioreactors
13. Gai P, Ji Y, Chen Y, Zhu C, Zhang J, Zhu J-J (2015) A Nitrogen-doped graphene/gold nanoparticle/formate dehydrogenase bioanode for high power output membrane-less formic acid/O 2
biofuel cells. Analyst 140:1822–1826
14. Sakai H, Nakagawa T, Tokita Y, Hatazawa T, Ikeda T, Tsujimura S, Kano K (2009) A highpower glucose/oxygen biofuel cell operating under quiescent conditions. Energy Environ Sci
2:133–138
15. Sakai H, Mita H, Sugiyama T, Tokita Y, Shirai O, Kano K (2014) Construction of a multi-stacked
sheet-type enzymatic biofuel cell. Electrochemistry 82:156–161
16. Soukharev V, Mano N, Heller A (2004) A four-electron O 2 -electroreduction biocatalyst
superior to platinum and a biofuel cell operating at 0.88 V. J Am Chem Soc 126:8368–8369
17. Reuillard B, Abreu C, Lalaoui N, Le Goff A, Holzinger M, Ondel O, Buret F, Cosnier S (2015)
One-year stability for a glucose/oxygen biofuel cell combined with pH reactivation of the
laccase/carbon nanotube biocathode. Bioelectrochemistry 106:73–76
18. Shitanda I, Kato S, Hoshi Y, Itagaki M, Tsujimura S (2013) Flexible and high-performance
paper-based biofuel cells using printed porous carbon electrodes. Chem Commun 49:1110–
1112
19. Sahin S, Cai R, Milton RD, Abdellaou S, Macazo FC, Mintee SD (2018) Molybdenumdependent formate dehydrogenase for formate bioelectrocatalysis in a formate/O 2 enzymatic
fuel cell. J Electrochem Soc 165:H109–H113
20. So K, Kitazumi Y, Shirai O, Nishikawa K, Higuchi Y, Kano K (2016) Direct electron transfertype dual gas diffusion H 2 /O 2 biofuel cells. J Mater Chem A 4:8742–8749
21. Xia H, So K, Kitazumi Y, Shirai O, Nishikawa K, Higuchi Y, Kano K (2016) Dual gasdiffusion membrane- and mediatorless dihydrogen/air-breathing biofuel cell operating at room
temperature. J Power Sources 335:105–112
22. So K, Kawai S, Hamano Y, Kitazumi Y, Shirai O, Hibi M, Ogawa J, Kano K (2014) Improvement of a direct electron transfer-type fructose/dioxygen biofuel cell with a substrate-modified
biocathode. Phys Chem Chem Phys 16:4823–4829
23. Miyake T, Yoshino S, Yamada T, Hata K, Nishizawa M (2011) Self-regulating enzyme-nanotube
ensemble films and their application as flexible electrodes for biofuel cells. J Am Chem Soc
133:5129–5134
24. de Poulpiquet A, Ciaccafava A, Gadiou R, Gounel S, Giudici-Orticoni MT, Mano N, Lojou E
(2014) Design of a H 2 /O 2 biofuel cell based on thermostable enzymes. Electrochem Commun
42:72–74
25. Murata K, Kajiya K, Nakamura N, Ohno H (2009) Direct Electrochemistry of bilirubin oxidase
on three-dimensional gold nanoparticle electrodes and its application in a biofuel cell. Energy
Environ Sci 2:1280–1285
26. Kamitaka Y, Tsujimura S, Setoyama N, Kajino T, Kano K (2007) Fructose/dioxygen biofuel cell
based on direct electron transfer-type bioelectrocatalysis. Phys Chem Chem Phys 9:1793–1801
27. Lalaoui N, de Poulpiquet A, Haddad R, Le Goff A, Holzinger M, Gounel S, Mermoux M,
Infossi P, Mano N, Lojou E, Cosnier S (2015) A membraneless air-breathing hydrogen biofuel
cell based on direct wiring of thermostable enzymes on carbon nanotube electrodes. Chem
Commun 51:7447–7450
28. Xu L, Armstrong FA (2013) Optimizing the power of enzyme-based membrane-less hydrogen
fuel cells for hydrogen-rich H 2 –air mixtures. Energy Environ Sci 6:2166–2171
29. Wait AF, Parkin A, Morley GM, dos Santos L, Armstrong FA (2010) Characteristics of enzymebased hydrogen fuel cells using an oxygen-tolerant hydrogenase as the anodic catalyst. J Phys
Chem C 114:12003–12009
30. Sakai H, Nakagawa T, Mita H, Matsumoto R, Sugiyama T, Kumita H, Tokita Y, Hatazaw T
(2009) A high-power glucose/oxygen biofuel cell operating under quiescent conditions. ECS
Trans 16:9–15
31. Zhu Z, Wang Y, Minteer SD, Percival Zhang YH (2011) Maltodextrin-powered enzymatic fuel
cell through a non-natural enzymatic pathway. J Power Sources 196:7505–7509
7 Applications to Biofuel Cells and Bioreactors
13. Gai P, Ji Y, Chen Y, Zhu C, Zhang J, Zhu J-J (2015) A Nitrogen-doped graphene/gold nanoparticle/formate dehydrogenase bioanode for high power output membrane-less formic acid/O 2
biofuel cells. Analyst 140:1822–1826
14. Sakai H, Nakagawa T, Tokita Y, Hatazawa T, Ikeda T, Tsujimura S, Kano K (2009) A highpower glucose/oxygen biofuel cell operating under quiescent conditions. Energy Environ Sci
2:133–138
15. Sakai H, Mita H, Sugiyama T, Tokita Y, Shirai O, Kano K (2014) Construction of a multi-stacked
sheet-type enzymatic biofuel cell. Electrochemistry 82:156–161
16. Soukharev V, Mano N, Heller A (2004) A four-electron O 2 -electroreduction biocatalyst
superior to platinum and a biofuel cell operating at 0.88 V. J Am Chem Soc 126:8368–8369
17. Reuillard B, Abreu C, Lalaoui N, Le Goff A, Holzinger M, Ondel O, Buret F, Cosnier S (2015)
One-year stability for a glucose/oxygen biofuel cell combined with pH reactivation of the
laccase/carbon nanotube biocathode. Bioelectrochemistry 106:73–76
18. Shitanda I, Kato S, Hoshi Y, Itagaki M, Tsujimura S (2013) Flexible and high-performance
paper-based biofuel cells using printed porous carbon electrodes. Chem Commun 49:1110–
1112
19. Sahin S, Cai R, Milton RD, Abdellaou S, Macazo FC, Mintee SD (2018) Molybdenumdependent formate dehydrogenase for formate bioelectrocatalysis in a formate/O 2 enzymatic
fuel cell. J Electrochem Soc 165:H109–H113
20. So K, Kitazumi Y, Shirai O, Nishikawa K, Higuchi Y, Kano K (2016) Direct electron transfertype dual gas diffusion H 2 /O 2 biofuel cells. J Mater Chem A 4:8742–8749
21. Xia H, So K, Kitazumi Y, Shirai O, Nishikawa K, Higuchi Y, Kano K (2016) Dual gasdiffusion membrane- and mediatorless dihydrogen/air-breathing biofuel cell operating at room
temperature. J Power Sources 335:105–112
22. So K, Kawai S, Hamano Y, Kitazumi Y, Shirai O, Hibi M, Ogawa J, Kano K (2014) Improvement of a direct electron transfer-type fructose/dioxygen biofuel cell with a substrate-modified
biocathode. Phys Chem Chem Phys 16:4823–4829
23. Miyake T, Yoshino S, Yamada T, Hata K, Nishizawa M (2011) Self-regulating enzyme-nanotube
ensemble films and their application as flexible electrodes for biofuel cells. J Am Chem Soc
133:5129–5134
24. de Poulpiquet A, Ciaccafava A, Gadiou R, Gounel S, Giudici-Orticoni MT, Mano N, Lojou E
(2014) Design of a H 2 /O 2 biofuel cell based on thermostable enzymes. Electrochem Commun
42:72–74
25. Murata K, Kajiya K, Nakamura N, Ohno H (2009) Direct Electrochemistry of bilirubin oxidase
on three-dimensional gold nanoparticle electrodes and its application in a biofuel cell. Energy
Environ Sci 2:1280–1285
26. Kamitaka Y, Tsujimura S, Setoyama N, Kajino T, Kano K (2007) Fructose/dioxygen biofuel cell
based on direct electron transfer-type bioelectrocatalysis. Phys Chem Chem Phys 9:1793–1801
27. Lalaoui N, de Poulpiquet A, Haddad R, Le Goff A, Holzinger M, Gounel S, Mermoux M,
Infossi P, Mano N, Lojou E, Cosnier S (2015) A membraneless air-breathing hydrogen biofuel
cell based on direct wiring of thermostable enzymes on carbon nanotube electrodes. Chem
Commun 51:7447–7450
28. Xu L, Armstrong FA (2013) Optimizing the power of enzyme-based membrane-less hydrogen
fuel cells for hydrogen-rich H 2 –air mixtures. Energy Environ Sci 6:2166–2171
29. Wait AF, Parkin A, Morley GM, dos Santos L, Armstrong FA (2010) Characteristics of enzymebased hydrogen fuel cells using an oxygen-tolerant hydrogenase as the anodic catalyst. J Phys
Chem C 114:12003–12009
30. Sakai H, Nakagawa T, Mita H, Matsumoto R, Sugiyama T, Kumita H, Tokita Y, Hatazaw T
(2009) A high-power glucose/oxygen biofuel cell operating under quiescent conditions. ECS
Trans 16:9–15
31. Zhu Z, Wang Y, Minteer SD, Percival Zhang YH (2011) Maltodextrin-powered enzymatic fuel
cell through a non-natural enzymatic pathway. J Power Sources 196:7505–7509
