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N 掺杂单壁碳纳米管对漆酶生物电化学的影响。

Effect of N-doping of single-walled carbon nanotubes on bioelectrocatalysis of laccase.

机构信息

Graduate School of Science and Technology, Kumamoto University , 2-39-1 Kurokami Chuo-ku, Kumamoto 860-8555, Japan.

出版信息

Anal Chem. 2014 May 20;86(10):5053-60. doi: 10.1021/ac500700h. Epub 2014 Apr 30.

Abstract

Nondoped and N-doped SWCNTs (N-SWCNTs) were used to clarify the effect of N-doping on a direct electron transfer (DET) reaction of laccase (Lac, from Trametes sp.). The level of N-doping in the carbon phase of the N-SWCNTs, which were synthesized by a CVD method, was determined to be 0.1, 2.4, and 4.1% from X-ray photoelectron spectroscopy measurements. The N-SWCNTs were also carefully characterized using electron microscopy, Brunauer-Emmett-Teller (BET) specific surface area measurements, Raman spectroscopy, and electrochemistry. The bioelectrocatalytic current for the DET reaction of Lac immobilized onto the N-SWCNTs tended to decrease with increasing N dopant ratio, whereas the amount of Lac adsorbed per BET surface area of the N-SWCNTs did not depend on the N dopant ratio. There were two main explanations for this behavior. First, an electrostatic interaction between the positively charged interface of the N-SWCNTs due to nitrogen species surface functional groups and the negative charges of carboxylate residues surrounding the T1 site. Second, the surface potential of the N-SWCNTs during Lac modification, because the slope value of the surface potential versus N dopant ratio of the N-SWCNTs was about 53 mV/N%. From additional investigations into the surface potential effect and thermodynamic investigations, we carefully concluded that the above behaviors may be due to denaturation and/or decreasing of the DET reaction rate caused by the strong electrostatic interaction between Lac and the N-SWCNTs surface.

摘要

未掺杂和 N 掺杂单壁碳纳米管(N-SWCNTs)被用于阐明 N 掺杂对漆酶(Lac,来自云芝属)直接电子转移(DET)反应的影响。通过 CVD 法合成的 N-SWCNTs 的碳相中 N 掺杂水平通过 X 射线光电子能谱测量确定为 0.1、2.4 和 4.1%。还使用电子显微镜、BET 比表面积测量、拉曼光谱和电化学对 N-SWCNTs 进行了仔细表征。固定在 N-SWCNTs 上的 Lac 的 DET 反应的生物电化学电流随着 N 掺杂剂比例的增加而趋于降低,而 N-SWCNTs 的 BET 比表面积上吸附的 Lac 量与 N 掺杂剂比例无关。这种行为有两个主要解释。首先,由于氮物种表面官能团,N-SWCNTs 带正电荷的界面与围绕 T1 位的羧酸根残基之间的静电相互作用。其次,Lac 修饰过程中 N-SWCNTs 的表面电势,因为 N-SWCNTs 的表面电势与 N 掺杂剂比例的斜率值约为 53 mV/N%。通过对表面电势效应和热力学研究的进一步研究,我们仔细得出结论,上述行为可能是由于 Lac 与 N-SWCNTs 表面之间的强静电相互作用导致的变性和/或 DET 反应速率降低所致。

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