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Wiring microbial biofilms to the electrode by osmium redox polymer for the performance enhancement of microbial fuel cells

机译:通过氧化还原聚合物将微生物生物膜连接到电极,以增强微生物燃料电池的性能

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摘要

An osmium redox polymer, PM-PVI-[Os(4,4'-dimethy1-2,2'-bipyridine)2CI](+/2+) that has been used in enzymatic fuel cells and microbial sensors, was applied for the first time to the anode of single-chamber microbial fuel cells with the mixed culture inoculum aiming at enhancing performance. Functioning as a molecular wire connecting the biofilm to the anode, power density increased from 1479 mW m(-2) without modification to 2355 mW m(-2) after modification of the anode. Evidence from cyclic voltarrunetry showed that the catalytic activity of an anodic biofilm was greatly enhanced in the presence of an osmium redox polymer, indicating that electrons were more efficiently transferred to the anode via co-immobilized osmium complex tethered to wiring polymer chains at the potential range of -03V-+0.1 V (vs. SCE). The optimum amount of the redox polymer was determined to be 0.163 mg cm(-2). (C) 2015 Elsevier BV. All rights reserved.
机译:has氧化还原聚合物PM-PVI- [Os(4,4'-dimethy1-2,2'-联吡啶)2CI](+ / 2+)已用于酶燃料电池和微生物传感器。首次使用混合培养接种物将单室微生物燃料电池阳极化,旨在提高性能。作为将生物膜连接到阳极的分子线,功率密度从未经修饰的1479 mW m(-2)增加到修饰阳极后的2355 mW m(-2)。循环伏安法的证据表明,在red氧化还原聚合物存在下,阳极生物膜的催化活性大大增强,表明电子通过束缚在电位范围内的聚合物链上的共固定络合物更有效地转移到阳极上。 -03V- + 0.1 V(vs.SCE)确定氧化还原聚合物的最佳量为0.163 mg cm(-2)。 (C)2015 Elsevier BV。版权所有。

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