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碳纳米管作为电极修饰剂促进希瓦氏菌属从电子传递。

Carbon nanotubes as electrode modifier promoting direct electron transfer from Shewanella oneidensis.

机构信息

School of Civil and Environmental Engineering, Nanyang Technological University, Singapore, Singapore.

出版信息

Biosens Bioelectron. 2010 Jan 15;25(5):1248-51. doi: 10.1016/j.bios.2009.10.002. Epub 2009 Oct 12.

Abstract

This study compared voltammetric behavior and catalytic current generation of Shewanella oneidensis on glassy carbon electrode (GCE) with and without carbon nanotube (CNT) modifier. A bare GCE in an electrochemical cell inoculated with S. oneidensis delivered a low current density of 0.117+/-0.006 microA/cm(2) after being anodically polarized for 15h. Cyclic voltammogram suggested current generation could be attributed to S. oneidensis's cell surface cytochromes. But the cytochromes demonstrated irreversible electrochemistry, where electro-oxidation was inhibited. Modification of the working electrode with CNTs transformed such rectification behavior. Additionally, the kinetics of electron transfer (ET) between cell surface cytochrome and electrode was enhanced, it was characterized by reduced oxidative/reductive peak separation. The heterogeneous ET rate constant was estimated to be 1.25 s(-1) with the modified electrode. The promoting effect of CNTs directly raised current density to 9.70+/-0.40 microA/cm(2), a level 82 times greater than that of the original. The CNTs may have similar promoting effects towards exocellular ET of other exoelectrogens.

摘要

本研究比较了在有和没有碳纳米管 (CNT) 修饰剂的情况下,希瓦氏菌(Shewanella oneidensis)在玻碳电极 (GCE) 上的伏安行为和催化电流产生。在电化学池中接种了 S. oneidensis 的裸 GCE 在阳极极化 15 小时后,产生的电流密度仅为 0.117+/-0.006 microA/cm(2)。循环伏安图表明,电流产生可归因于 S. oneidensis 的细胞表面细胞色素。但是,细胞色素表现出不可逆的电化学,其中电氧化受到抑制。通过 CNT 修饰工作电极可以改变这种整流行为。此外,细胞表面细胞色素和电极之间的电子转移 (ET) 动力学得到增强,其特征是氧化/还原峰分离减小。用修饰电极估计异质 ET 速率常数为 1.25 s(-1)。CNT 的直接促进作用将电流密度提高到 9.70+/-0.40 microA/cm(2),比原始电流密度提高了 82 倍。CNT 可能对其他外生菌的细胞外 ET 具有类似的促进作用。

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