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一种新型双阻抗分析石英晶体微天平系统——牛血清白蛋白在金和铂电极表面吸附的研究。

A novel dual-impedance-analysis EQCM system--investigation of bovine serum albumin adsorption on gold and platinum electrode surfaces.

作者信息

Xie Qingji, Xiang Canhui, Yuan Yu, Zhang Youyu, Nie Lihua, Yao Shouzhuo

机构信息

Chemical Research Institute, Hunan Normal University, Changsha 410081, People's Republic of China.

出版信息

J Colloid Interface Sci. 2003 Jun 1;262(1):107-15. doi: 10.1016/S0021-9797(03)00196-6.

Abstract

Both quartz crystal micro-balance (QCM) impedance and electrochemical impedance spectroscopy (EIS) methods are widely used in interface studies. This paper presents details about a new strategy for simultaneous, mutual-interference-free and accurate measurements of QCM impedance and EI, through connecting a suitable capacitance in series with the piezoelectric quartz crystal (PQC) between QCM impedance and EIS measurement instruments. Combined and individual measurements of QCM impedance and EIS during silver deposition gave results comparable with each other, demonstrating the reliability of the proposed method. Bovine serum albumin (BSA) adsorption on gold and platinum electrodes in Britton-Robinson (B-R) buffers was investigated, and the Fe(CN)6(3-)/Fe(CN)6(4-) couple was used as an electrochemical probe to characterize BSA adsorption. While the reversibility of Fe(CN)6(3-)/Fe(CN)6(4-) couple on bare Au and Pt electrodes changed very slightly with decreasing solution pH from pH approximately 7 to pH approximately 2, the standard rate constant (ks) of this couple increased abruptly with solution pH below pH approximately 4.5 at a BSA-modified Au electrode, but decreased with solution pH at a BSA-modified Pt electrode. By analyzing the QCM impedance data with a modified BVD equivalent circuit and the EI data with a modified Randle's equivalent circuit, inflexion changes at pH approximately 4.5 were all found at pH-dependent responses of the resonant frequency, the double-layer capacitance, the capacitance of the adsorbed BSA layer, the peak-absorbance values of BSA solutions at 277.5 and 224.5 nm, and so on. It was also found that a BSA adsorption layer can effectively inhibit gold corrosion during ferrocyanide oxidation in a ferrocyanide-containing BR solution. Some preliminary explanations of these findings have been given. The proposed method is highly recommended for wider applications in surface science.

摘要

石英晶体微天平(QCM)阻抗法和电化学阻抗谱(EIS)方法都广泛应用于界面研究。本文介绍了一种新策略的详细信息,该策略通过在QCM阻抗和EIS测量仪器之间将一个合适的电容与压电石英晶体(PQC)串联,实现对QCM阻抗和EIS的同时、无相互干扰且准确的测量。在银沉积过程中对QCM阻抗和EIS进行的联合测量和单独测量给出了相互可比的结果,证明了所提出方法的可靠性。研究了牛血清白蛋白(BSA)在Britton-Robinson(B-R)缓冲液中在金电极和铂电极上的吸附情况,并使用Fe(CN)6(3-)/Fe(CN)6(4-)电对作为电化学探针来表征BSA的吸附。虽然在裸金电极和铂电极上,Fe(CN)6(3-)/Fe(CN)6(4-)电对的可逆性在溶液pH从约7降低到约2时变化非常小,但在BSA修饰的金电极上,当溶液pH低于约4.5时,该电对的标准速率常数(ks)随溶液pH急剧增加,而在BSA修饰的铂电极上则随溶液pH降低。通过用改进的BVD等效电路分析QCM阻抗数据以及用改进的Randle等效电路分析EIS数据,发现在共振频率、双层电容、吸附的BSA层电容、BSA溶液在277.5和224.5 nm处的峰值吸光度值等与pH相关的响应中,在约4.5的pH处都出现了拐点变化。还发现BSA吸附层可以有效抑制含亚铁氰化物的BR溶液中亚铁氰化物氧化过程中的金腐蚀。已对这些发现给出了一些初步解释。强烈推荐所提出的方法在表面科学中得到更广泛的应用。

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