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首页> 外文期刊>Bulletin of the Korean Chemical Society >Synthesis of a New Cathode Redox Polymer for High Performance in Biofuel Cells
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Synthesis of a New Cathode Redox Polymer for High Performance in Biofuel Cells

机译:新型在生物燃料电池中具有高性能的阴极氧化还原聚合物的合成

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High potential and fast electron transfer of a cathode mediator are significant factors for improving the performance of biofuel cells. This paper reports the first synthesis of a cathode redox polymer that is a coordination complex of poly (acrylic acid-vinylpyridine-acryl amide) (PAA-PVP-PAA) and [Os(4,4`- dicarboxylic acid-2,2`-bipyridine)2Cl2]/+ (Eo = 0.48 V versus Ag/AgCl). Bilirubin oxidase can be easily incorporated into this polymer matrix, which carried out the four-electron oxygen under typical physiological conditions (pH 7.2, 0.14 M NaCl, and 37 oC). This new polymer showed an approximately 0.1 V higher redox potential than existing cathode mediators such as PAA-PVI-[Os(dCl-bpy)2Cl]+/2+. In addition, we suggest increasing the polymer solubility with two hydrophilic groups present in the polymer skeleton to further improve fast electron transfer within the active sites of the enzyme. The maximum power density achieved was 60% higher than that of PAA-PVI-[Os(dCl-bpy)2Cl]+/2+. Furthermore, high current density and electrode stability were confirmed for this osmium polymer, which makes it a promising candidate for high-efficiency biofuel cells.
机译:阴极介体的高电势和快速电子转移是改善生物燃料电池性能的重要因素。本文报道了阴极氧化还原聚合物的首次合成,该聚合物是聚(丙烯酸-乙烯基吡啶-丙烯酰胺)(PAA-PVP-PAA)和[Os(4,4`-二羧酸-2,2` -联吡啶)2Cl2] / +(Eo = 0.48 V,相对于Ag / AgCl)。胆红素氧化酶可以很容易地掺入该聚合物基质中,该聚合物基质在典型的生理条件(pH 7.2、0.14 M NaCl和37 oC)下进行四电子氧。这种新聚合物显示出比现有的阴极介体(例如PAA-PVI- [Os(dCl-bpy)2Cl] + / 2+)高约0.1 V的氧化还原电位。另外,我们建议通过在聚合物骨架中存在两个亲水基团来增加聚合物溶解度,以进一步改善酶活性位点内的快速电子转移。达到的最大功率密度比PAA-PVI- [Os(dCl-bpy)2Cl] + / 2+高60%。此外,证实了该聚合物的高电流密度和电极稳定性,这使其成为高效生物燃料电池的有希望的候选者。

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