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首页> 外文期刊>Angewandte Chemie >Anaerobic Respiration on Self-Doped Conjugated Polyelectrolytes: Impact of Chemical Structure
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Anaerobic Respiration on Self-Doped Conjugated Polyelectrolytes: Impact of Chemical Structure

机译:自掺杂共轭聚电解质的厌氧呼吸:化学结构的影响

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摘要

We probe anaerobic respiration of bacteria in the presence of conjugated polyelectrolytes (CPEs). Three different CPEs were used to probe how structural variations impact biocurrent generation from Shewanella oneidensis MR-1. For the self-doped anionic CPE only, absorption spectroscopy shows that the addition of S. oneidensis MR-1 leads to the disappearance of the polaron (radical cation) band at > 900 nm and an increase in the band at 735 nm due to the neutral species, consistent with electron transfer from microbe to polymer. Microbial three-electrode electrochemical cells (M3Cs) show an increase in the current generated by S. oneidensis MR-1 with addition of the self-doped CPE relative to other CPEs and controls. These experiments combined with in situ cyclic voltammetry suggest that the doped CPE facilitates electron transport to electrodes and reveal structure-function relationships relevant to developing materials for biotic/abiotic interfaces.
机译:我们在共轭聚电解质(CPES)存在下探测细菌的厌氧呼吸。 三种不同的CPE用于探测结构变异如何影响雪松oneidensis MR-1的生成生成。 仅针对自掺杂的阴离子CPE仅,吸收光谱显示S. onidensis MR-1的添加导致极化子(自由基阳离子)带在> 900nm处的消失,并且由于该频带在735nm处增加了435nm的带增加 中性物种,与从微生物转移到聚合物的电子转移。 微生物三电极电化学电池(M3C)显示了由S.Inidensis MR-1产生的电流增加,该电流相对于其他CPE和对照加入自掺杂CPE。 这些实验与原位循环伏安结合的表明,掺杂CPE有利于电子传输到电极,并揭示与生物/非生物界面的显影材料相关的结构功能关系。

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