首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Adsorption of human serum albumin on electrochemical titanium dioxide electrodes: Protein-oxide surface interaction effects studied by electrochemical techniques
【24h】

Adsorption of human serum albumin on electrochemical titanium dioxide electrodes: Protein-oxide surface interaction effects studied by electrochemical techniques

机译:人血清白蛋白在电化学二氧化钛电极上的吸附:通过电化学技术研究的蛋白质-氧化物表面相互作用效应

获取原文
获取原文并翻译 | 示例
           

摘要

The adsorption of Human Serum Albumin (HSA) on a semiconductor TiO_2 electrochemical oxide was investigated using Cyclic Voltammetry (CV), Capacity-Potential curves (C-E) and time-resolved tech_niques as a function of electrode potential and protein concentration. The presence of HSA adsorbed on the electrode surface modifies the voltamperometric behavior of the hydrogen evolution reaction (her) and also produces a major modification in the diffusional layer thickness of the H~+ ions. The adsorbed amounts of HSA were analyzed throughout different adsorption isotherms. The experimental data were modeled with a modified Langmuir type isotherm, considering a weak chemisorption on a sur_face with heterogeneity in site-energy distribution with some degree of attractive lateral interactions between the adsorbed protein molecules. The effect of the adsorption potential (E_ads) was investigated polarizing the electrode at -0.70, -0.50 and -0.08 V vs. SCE. The capacity response obtained from the different impedance experiments was determined by the space charge region in the semiconductor. It was possible to correlate processes produced by the protein adsorption on the surface (occurring in the electrolyte side of the interface) with changes in the semiconductor properties of the TiO_2 (in the oxide side of the interface). The adsorption of HSA produces an increase in donor concentration (ND) of the semiconductor and a shift of the E_fb to more negative values. These effects are more pronounced with an increase in the protein concentration. The relative change in N_D is lower and the change in E_fb is higher when the adsorption occurs at less negative applied potentials. Adsorption kinetics and thermodynamic parameters were calculated for a wide protein concentration range.
机译:利用循环伏安法(CV),电容-电位曲线(C-E)和时间分辨技术研究了人血清白蛋白(HSA)在半导体T​​iO_2电化学氧化物上的吸附随电极电位和蛋白质浓度的变化。吸附在电极表面上的HSA的存在改变了析氢反应(her)的伏安行为,并且还对H〜+离子的扩散层厚度产生了重大影响。在不同的吸附等温线中分析了HSA的吸附量。考虑修改后的Langmuir型等温线,对实验数据进行建模,考虑到表面的化学吸附较弱,且位能分布不均一,并且在吸附的蛋白质分子之间存在一定程度的有吸引力的横向相互作用。研究了吸附电位(E_ads)的影响,使电极在-0.70,-0.50和-0.08 V vs. SCE极化。从不同阻抗实验获得的电容响应由半导体中的空间电荷区域确定。可能将蛋白质吸附在表面(发生在界面的电解质侧)产生的过程与TiO_2(发生在界面的氧化物侧)的半导体性能的变化相关联。 HSA的吸附会增加半导体的施主浓度(ND),并使E_fb移至更大的负值。随着蛋白质浓度的增加,这些作用更加明显。当负负电势较小时发生吸附时,N_D的相对变化较小,而E_fb的变化较大。计算了广泛的蛋白质浓度范围内的吸附动力学和热力学参数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号