[1] Logan B E,Hamelers B,Rozendal R,et al. Microbial fuel cells:methodology and technology[J]. Environmental Science & Technol-ogy,2006,40(17):5181-5192.
[2] 李毅,胡翔,王程远,等. 微生物燃料电池在废水处理中的应用[J]. 工业水处理,2008,28(9):59-62.
[3] 潘朝智,牛冬杰,黄慧,等. 微生物燃料电池的研究进展与展望[J]. 工业水处理,2010,30(12):15-20.
[4] Kim B H,Chang I S,Gadd G M. Challenges in microbial fuel cell development and operation[J]. Applied Microbiology & Biotechnol-ogy,2007,76(3):485-494.
[5] 蔡志江. 导电聚合物材料在电化学器件中的应用及发展[J]. 电源技术,2006,30(1):74-78.
[6] 周佳盼,米红宇,王吉德,等. 导电聚合物的电化学制备及其应用研究进展[J]. 化学研究与应用,2014(7):961-966.
[7] 万梅香. 导电高分子[J].高分子通报,1999(3):47-53.
[8] Shirakawa H,Louis E J,Macdiarmid A G,et al. Synthesis of elec-trically conducting organic polymers:halogen derivatives of poly-acetylene,(CH)[x J]. Journal of the Chemical Society Chemical Com-munications,1977,16(16):578-580.
[9] 马利,汤琪. 导电高分子材料聚苯胺的研究进展[J].重庆大学学报:自然科学版,2002,25(2):124-127.
[10] Hidalgo D,Tommasi T,Bocchini S,et al. Surface modification of commercial carbon felt used as anode for microbial fuel cells[J]. Energy,2016,99:193-201.
[11] 綦琪,王许云,何海波,等. 微生物燃料电池聚苯胺膜阳极的制备及性能[J].科技导报,2015,33(14):82-86.
[12] 景遐斌,王利祥,王献红,等. 导电聚苯胺的合成、结构、性能和应用[J].高分子学报,2005,1(5):655-663.
[13] Lai Bin,Tang Xinghua,Li Haoran,et al. Power production en-hancement with a polyaniline modified anode in microbial fuel cells[J]. Biosensors & Bioelectronics,2011,28(1):373-377.
[14] Liao Z H,Sun J Z,Sun D Z,et al. Enhancement of power produc-tion with tartaric acid doped polyaniline nanowire network modi-fied anode in microbial fuel cells[J]. Bioresource Technology, 2015,192(2):831.
[15] Li C,Zhang L,Ding L,et al. Effect of conductive polymers coat-ed anode on the performance of microbial fuel cells(MFCs)and its biodiversity analysis[J]. Biosensors & Bioelectronics,2011,26(10):4169-4176.
[16] Qiao Y,Bao S J,Li C M,et al. Nanostructured polyaniline/titani-um dioxide composite anode for microbial fuel cells[J]. ACS Na-no,2008,2(1):113-119.
[17] Zhao Y,Watanabe K,Nakamura R,et al. Three-dimensional con-ductive nanowire networks for maximizing anode performance in microbial fuel cells[J]. Chemistry,2010,16(17):4982-4985.
[18] Wang Yaqiong,Li Bin,Zeng Lizhen,et al. Polyaniline/mesopo-rous tungsten trioxide composite as anode electrocatalyst for high-performance microbial fuel cells[J]. Biosensors & Bioelectronics, 2013,41(1):582-588.
[19] Kauffman D R,Star A. Carbon nanotube gas and vapor sensors[J]. Angewandte Chemie International Edition,2008,47(35):6550-6570.
[20] Qiao Yan,Li Changming,Bao Shujuan,et al. Carbon nanotube/polyaniline composite as anode material for microbial fuel cells[J]. Journal of Power Sources,2007,170(1):79-84.
[21] Cui Huifang,Du Lin,Guo Pengbo,et al. Controlled modification of carbon nanotubes and polyaniline on macroporous graphite felt for high-performance microbial fuel cell anode[J]. Journal of Pow-er Sources,2015,283:46-53.
[22] Fu Y B,Liu Z H,Su G,et al. Modified carbon anode by MW-CNTs/PANI used in marine sediment microbial fuel cell and its electrochemical performance[J]. Fuel Cells,2016,16(3):377-383.
[23] Yong Y C,Dong X C,Chanpark M B,et al. Macroporous and monolithic anode based on polyaniline hybridized three-dimension-al graphene for high-performance microbial fuel cells[J]. ACS Na-no,2012,6(3):2394-2400.
[24] Kumar G G,Kirubaharan C J,Udhayakumar S,et al. Conductive polymer/graphene supported platinum nanoparticles as anode cata-lysts for the extended power generation of microbial fuel cells[J]. Industrial & Engineering Chemistry Research,2017,53(43):16883-16893.
[25] Hou Junxian,Liu Zhongliang,Zhang Peiyuan. A new method for fabrication of graphene/polyaniline nanocomplex modified microbi-al fuel cell anodes[J]. Journal of Power Sources,2013,224:139-144.
[26] 蔡本慧,曹雷,王肇君. 导电聚合物聚吡咯的制备、性质及其应用[J]. 化工科技市场,2010,33(5):11-16.
[27] Zou Yongjin,Pisciotta J,Baskakov I V. Nanostructured polypyr-role-coated anode for sun-powered microbial fuel cells[J]. Bioelec-trochemistry,2010,79(1):50-56.
[28] Ding C M,Liu H,Lv M,et al. Hybrid bio-organic interfaces with matchable nanoscale topography for durable high extracellular elec-tron transfer activity[J]. Nanoscale,2014,6(14):7866-7871.
[29] Zhao C E,Wu J,Kjelleberg S,et al. Employing a flexible and low-cost polypyrrole nanotube membrane as an anode to enhance cur-rent generation in microbial fuel cells[J]. Small,2015,11(28):3440-3443.
[30] Feng C,Le M,Li F,et al. A polypyrrole/anthraquinone-2,6-di-sulphonic disodium salt(PPy/AQDS)-modified anode to improve performance of microbial fuel cells[J]. Biosensors & Bioelectron-ics,2010,25(6):1516-1520.
[31] Zou Yongjin,Xiang Cuili,Yang Lini,et al. A mediatorless micro-bial fuel cell using polypyrrole coated carbon nanotubes composite as anode material[J]. International Journal of Hydrogen Energy, 2008,33(18):4856-4862.
[32] Kumar G G,Kirubaharan C J,Udhayakumar S,et al. Synthesis, structural,and morphological characterizations of reduced gra-phene oxide-supported polypyrrole anode catalysts for improved microbial fuel cell performances[J]. Acs Sustainable Chemistry & Engineering,2014,2(10):2283-2290.
[33] Lü Zhisheng,Chen Yanfeng,Wei Hengchen,et al. One-step elec-trosynthesis of polypyrrole/graphene oxide composites for microbial fuel cell application[J]. Electrochimica Acta,2013,111(6):366-373.
[34] Wang Y,Zhao C E,Sun D,et al. A graphene/poly(3,4-ethylene-dioxythiophene)hybrid as an anode for high-performance microbi-al fuel cells[J]. Chempluschem,2013,78(8):823-829.
[35] Liu Xing,Wu Wenguo,Gu Zhongze. Poly(3,4-ethylenedioxythio-phene)promotes direct electron transfer at the interface between Shewanella loihica and the anode in a microbial fuel cell[J]. Jour-nal of Power Sources,2015,277:110-115.
[36] 霍庆城,黄仁亮,齐崴,等. GO/PEDOT复合材料修饰阳极的制备及其在MFC中的应用[J]. 化工学报,2016,67(10):4406-4412.
[37] 姚淑华,石中亮,谢德民. 聚丙烯腈热裂解导电材料的结构、性质及应用[J]. 东北师大学报:自然科学版,2001,33(1):39-43.
[38] Manickam S S,Karra U,Huang L,et al. Activated carbon nanofi-ber anodes for microbial fuel cells[J]. Carbon,2013,53:19-28.
[39] Wang Y Q,Huang H X,Li B,et al. Novelly developed three-di-mensional carbon scaffold anodes from polyacrylonitrile for micro-bial fuel cells[J]. Journal of Materials Chemistry A,2015,3(9):5110-5118.
[40] Adachi M,Shimomura T,Komatsu M,et al. A novel mediator-polymer-modified anode for microbial fuel cells[J]. Chemical Com-munications,2008,7(17):2055-2057.
[41] Sun Juanjuan,Zhao Huazhang,Yang Qinzheng,et al. A novel lay-er-by-layer self-assembled carbon nanotube-based anode:prepara-tion,characterization,and application in microbial fuel cell[J]. Electrochimica Acta,2010,55(9):3041-3047. |