[1] Barton S C, Gallaway J, Atanassov P. Enzymatic biofuel cells for implantable and microscale devices[J]. Chemical Reviews, 2004, 104(10): 4867-4886.[2] Willner I, Yan Y M, Willner B, et al. Integrated enzyme-based biofuel cells-A review[J]. Fuel Cells, 2009, 9(1): 7-24.[3] Cooney M J, Svoboda V, Lan C, et al. Enzyme catalysed biofuel cells[J]. Energy & Environmental Science, 2008, 1(3): 320-337.[4] Zhou M, Dong S J. Bioelectrochemical interface engineering: Toward the fabrication of electrochemical biosensors, biofuel bells, and self-powered logic biosensors[J]. Accounts of Chemical Research, 2011, 44(11): 1232-1243.[5] Yan Y M, Zheng W, Su L, et al. Carbon-nanotube-based glucose/O2 biofuel cells[J]. Advanced Materials, 2006, 18(19): 2639-2643.[6] Gao F, Yan Y M, Su L, et al. An enzymatic glucose/O2 biofuel cell: Preparation, characterization and performance in serum[J]. Electrochemistry Communications, 2007, 9(5): 989-996.[7] Cheng H J, Yu P, Lu X L, et al. Biofuel cell-based self-powered biogenerators for online continuous monitoring of neurochemicals in rat brain[J]. Analyst, 2013, 138(1): 179-185.[8] Cracknell J A, Vincent K A, Armstrong F A. Enzymes as working or inspirational electrocatalysts for fuel cells and electrolysis[J]. Chemical Reviews, 2008, 108(7): 2439-2461.[9] Li X C, Zhou H J, Yu P, et al. A miniature glucose/O2 biofuel cell with single-walled carbon nanotubes-modified carbon fiber microelectrodes as the substrate[J]. Electrochemistry Communications, 2008, 10(6): 851-854.[10] Logan B E, Hamelers B, Rozendal R A, et al. Microbial fuel cells: Methodology and technology[J]. Environmental Science & Technology, 2006, 40(17): 5181-5192.[11] Katz E, Willner I, Kotlyar A B. A non-compartmentalized glucose vertical bar O2 biofuel cell by bioengineered electrode surfaces[J]. Journal of Electroanalytical Chemistry, 1999, 479(1): 64-68.[12] Mano N, Mao F, Heller A. Characteristics of a miniature compartment-less glucose-O2 biofuel cell and its operation in a living plant[J]. Journal of the American Chemical Society, 2003, 125(21): 6588-6594.[13] Halamkova L, Halamek J, Bocharova V, et al. Implanted biofuel cell operating in a living snail[J]. Journal of the American Chemical Society, 2012, 134(11): 5040-5043.[14] Yan Y M, Yehezkeli O, Willner I. Integrated, electrically contacted NAD(P)(+)-dependent enzyme - carbon nanotube electrodes for biosensors and biofuel cell applications[J]. Chemistry-A European Journal, 2007, 12(36): 10168-10175.[15] Yan Y M, Baravik I, Tel-Vered R, et al. An Ethanol/O2 biofuel cell based on an electropolymerized bilirubin oxidase/Pt nanoparticle bioelectrocatalytic O2-reduction cathode[J]. Advanced Materials, 2009, 21(42): 4275-4279.[16] Yan Y M, Fang J M, Yang Z Y, et al. Photoelectrochemical oxidation of glucose for sensing and fuel cell applications[J]. Chemical Communications, 2013, 49(77): 8632-8634.[17] Yan J, Zhou H J, Yu P, et al. Rational functionalization of carbon nanotubes leading to electrochemical devices with striking applications[J]. Advanced Materials, 2008, 20(15): 2899-2906.[18] Han L, Bai L, Zhu C Z, et al. Improving the performance of a membraneless and mediatorless glucose-air biofuel cell with a TiO2 nanotube photoanode[J]. Chemical Communications, 2012, 48(49): 6103-6105. |