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使用表面等离子体共振光谱法原位检测金属离子对硫醇化表面的吸附

In situ sensing of metal ion adsorption to a thiolated surface using surface plasmon resonance spectroscopy.

作者信息

Moon Jungwoo, Kang Taewook, Oh Seogil, Hong Surin, Yi Jongheop

机构信息

School of Chemical and Biological Engineering, Institute of Chemical Processes, Seoul National University, Seoul 151-744, South Korea.

出版信息

J Colloid Interface Sci. 2006 Jun 15;298(2):543-9. doi: 10.1016/j.jcis.2005.12.066. Epub 2006 Feb 3.

Abstract

The kinetics of the adsorption of metal ions onto a thiolated surface and the selective and quantitative sensing of metal ions were explored using surface plasmon resonance (SPR) spectroscopy. The target metal ion was an aqueous solution of Pt2+ and a thin-gold-film-coated glass substrate was modified with 1,6-hexanedithiol (HDT) as a selective sensing layer. SPR spectroscopy was used to examine the kinetics of metal ion adsorption by means of the change in SPR angle. The selectivity of the thiolated surface for Pt2+ over other divalent metal ions such as Cu2+, Ni2+, and Cd2+ was evident by the time-resolved SPR measurement. SPR angle shift, deltatheta(SPR), was found to increase logarithmically with increasing concentration of Pt2+ in the range of 1.0 x 10(-5)-1.0 mM. The rate of Pt2+ adsorption on HDT observed at both 0.1 and 1 mM Pt2+ accelerates until the surface coverage reaches approximately 17%, after which the adsorption profile follows Langmuirian behavior with the surface coverage. The experimental data indicated that heavy metal ions were adsorbed to the hydrophobic thiolated surface by a cooperative mechanism. A mixed self-assembled monolayer (SAM) composed of HDT and 11-mercaptoundecanoic acid was used to reduce the hydrophobicity of the thiol-functionalized surface. The addition of hydrophilic groups to the surface enhanced the rate of adsorption of Pt2+ onto the surface. The findings show that the adsorption of metal ions is strongly dependent upon the hydrophilicity/hydrophobicity of the surface and that the technique represents an easy method for analyzing the adsorption of metal ions to a functionalized surface by combining SPR spectroscopy with a SAM modification.

摘要

利用表面等离子体共振(SPR)光谱研究了金属离子在硫醇化表面的吸附动力学以及金属离子的选择性定量传感。目标金属离子为Pt2+的水溶液,用1,6-己二硫醇(HDT)作为选择性传感层对涂有薄金膜的玻璃基板进行修饰。通过SPR角度的变化,利用SPR光谱研究了金属离子的吸附动力学。通过时间分辨SPR测量可以明显看出,硫醇化表面对Pt2+的选择性高于其他二价金属离子,如Cu2+、Ni2+和Cd2+。发现在1.0×10(-5)-1.0 mM范围内,SPR角位移Δθ(SPR)随Pt2+浓度的增加呈对数增加。在0.1 mM和1 mM Pt2+浓度下观察到的Pt2+在HDT上的吸附速率在表面覆盖率达到约17%之前加速,之后吸附曲线遵循朗缪尔行为与表面覆盖率的关系。实验数据表明,重金属离子通过协同机制吸附到疏水的硫醇化表面。由HDT和11-巯基十一烷酸组成的混合自组装单分子层(SAM)用于降低硫醇功能化表面的疏水性。向表面添加亲水基团提高了Pt2+在表面的吸附速率。研究结果表明,金属离子的吸附强烈依赖于表面的亲水性/疏水性,并且该技术通过将SPR光谱与SAM修饰相结合,代表了一种分析金属离子在功能化表面吸附的简便方法。

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