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Self-assembled cauliflower-like pyrite-S, N co-doped graphene quantum dots as free-standing anode with high conductivity and biocompatibility for bioelectricity production

机译:自组装的花椰酸纤维铁矿-S,N共掺杂石墨烯量子点作为具有高导电性和生物电解生产的直立阳极

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Ferrous disulfide (FeS2) decorated S, N co-doped graphene quantum dots (S, N GQDs) (FeS2-S, N GQDs), were synthesized using a facile approach involving a straight hydrothermal method and tested as bioanode in acetate feeding microbial fuel cells (MFCs) based on a mixed bacterial culture with superior performances. The physical characterizations FeS2-S, N GQDs corroborate the unique configuration that is desirable for bacteria immobilization and effective electrolyte transport. The electrochemical measurements prove the superior performance of the bifunctional electrocatalysis of FeS2-S, N GQDs for the conversion of biomass into electricity through bacteria. Significantly, at a steady-state of the power generation, the acetate-feeding MFC with FeS2-S, N GQDs as activated biomass anode delivers a maximum power density 1128 +/- 9 mW/m(2), which is 48% and 76% higher than the one using S, N GQDs (585 +/- 7 mW/m(2)) and carbon cloth (265 +/- 3 mW/m(2)) as anode electrocatalyst. With these merits, the bioanode facilitates the activity towards redox reactions of cytochromes in bacteria and exhibits higher maximum power density and stronger stability than the conventional carbon cloth. This report provides a new concept of anode electrocatalyst fabrication for the application of MFC in electricity generation.
机译:使用涉及直接水热法的容纳方法合成含铁二硫化亚硫化物(FES2),N掺杂石墨烯量子点(FES2-S,N GQD)(FES2-S,N GQD)合成,并在醋酸乙酸喂养微生物燃料中被测试为生物偶联基于具有优异性能的混合细菌培养物的细胞(MFCs)。物理特征FES2-S,N GQDS证实了可用于细菌固定和有效电解质运输的独特构型。电化学测量证明了FES2-S,N GQD的双功能电常分的优异性能,使生物质转化为通过细菌的电力。显着地,在发电的稳定状态下,醋酸酯的MFC用FES2-S,N GQD为活性生物量阳极提供最大功率密度1128 +/- 9 mw / m(2),为48%和比使用S,N GQDS(585 +/- 7mW / m(2))和碳布(265 +/- 3mW / m(2))高出76%作为阳极电催化剂。通过这些优点,Bioanode有助于对细胞中细胞变色的氧化还原反应的活性促进氧化还原反应,并且表现出更高的最大功率密度和比传统碳布更强的稳定性。本报告为应用MFC在发电中的应用提供了一种新的阳极电催化剂制造概念。

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