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利用正弦大振幅傅里叶变换交流伏安法中可用的谐波成分,对表面受限蛋白质的电极动力学和表面非均质性的影响进行系统评估。

Systematic evaluation of electrode kinetics and impact of surface heterogeneity for surface-confined proteins using analysis of harmonic components available in sinusoidal large-amplitude Fourier transformed ac voltammetry.

作者信息

Lee Chong-Yong, Fleming Barry D, Zhang Jie, Guo Si-Xuan, Elton Darrell M, Bond Alan M

机构信息

School of Chemistry, Monash University, Clayton, Victoria 3800, Australia.

出版信息

Anal Chim Acta. 2009 Oct 12;652(1-2):205-14. doi: 10.1016/j.aca.2009.05.015. Epub 2009 May 21.

Abstract

A systematic approach to quantifying the electrode kinetics of surface-confined proteins and identifying the impact of surface heterogeneity is presented. The evaluation approach is based on analysis of individual harmonics derived from Fourier transformed large-amplitude ac voltammetry, and their peak current magnitude, I(p)(nomegat) versus frequency, f, relationships. Effectively, variability in the time-scale of each harmonic is expected, and advantage is taken of the fact that each individual harmonic displays a different level of sensitivity with respect to the kinetic evaluation. The data strategy protocols have been examined for the azurin Cu(II)/Cu(I) process when this metalloprotein is immobilized on gold electrodes modified alkanethiols having different chain lengths, using both pure and mixed thiol systems. I(p)(nomegat) versusf relationships also offer the advantage of the ability to detect and allow for the ohmic IR(u) drop effect and allow analyses that are independent of protein surface coverage. Estimation of an electron transfer rate is achievable from this form of analysis. However, experimentally observed waveshapes for each individual harmonic are consistently broader than that deduced theoretically on the basis of their rate constants because of kinetic and/or thermodynamic dispersion. In the mixed thiol systems, and with use of the ac method, kinetic discrimination is achieved for fast processes. This systematic study based on a model protein indicates that a more comprehensive level of evaluation of electrode kinetics can be derived from analysis of the ac harmonics available in large-amplitude ac voltammetry, by initially using I(p)(nomegat)-f data to evaluate the electrode kinetics followed by waveshape analysis to detect heterogeneity effects that give rise to kinetic or thermodynamic dispersion.

摘要

本文提出了一种系统的方法,用于量化表面受限蛋白质的电极动力学,并确定表面异质性的影响。该评估方法基于对傅里叶变换大振幅交流伏安法得到的各个谐波及其峰值电流幅度(I(p)(\text{no}\omega))与频率(f)关系的分析。实际上,预计每个谐波的时间尺度会存在变化,并利用了每个单独谐波在动力学评估方面表现出不同灵敏度这一事实。当这种金属蛋白固定在具有不同链长的烷硫醇修饰的金电极上时,已使用纯硫醇和混合硫醇体系对天青蛋白(Cu(II)/Cu(I))过程的数据策略协议进行了研究。(I(p)(\text{no}\omega))与(f)的关系还具有能够检测并考虑欧姆(IR(u))降效应的优点,并允许进行与蛋白质表面覆盖率无关的分析。通过这种分析形式可以实现电子转移速率的估计。然而,由于动力学和/或热力学分散,实验观察到的每个单独谐波的波形始终比基于其速率常数理论推导的波形更宽。在混合硫醇体系中,通过使用交流方法,可实现对快速过程的动力学区分。基于模型蛋白的这项系统研究表明,通过首先使用(I(p)(\text{no}\omega)-f)数据评估电极动力学,然后进行波形分析以检测导致动力学或热力学分散的异质性效应,可以从大振幅交流伏安法中可用的交流谐波分析中得出更全面的电极动力学评估水平。

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