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通过电动和表面力测量对金表面双电层的研究。

The electrical double layer on gold probed by electrokinetic and surface force measurements.

作者信息

Giesbers Marcel, Kleijn J Mieke, Cohen Stuart Martien A

机构信息

Laboratory of Physical Chemistry and Colloid Science, Wageningen University, PO Box 8038, Wageningen, 6700 EK, The Netherlands.

出版信息

J Colloid Interface Sci. 2002 Apr 1;248(1):88-95. doi: 10.1006/jcis.2001.8144.

Abstract

Gold surfaces, obtained by vacuum deposition of 15-nm gold films on glass and silica wafers, were studied in aqueous solutions by streaming potential measurements and colloidal-probe AFM force measurements. In the force measurements both a bare and a gold-coated silica particle (6 microm in diameter) have been used as colloidal probes. From the streaming potential measurements we determined the zeta-potential of the gold surface, while from the force measurements the diffuse double-layer potential psi(d) was obtained by fitting the data to the DLVO theory or to the nonlinear Poisson-Boltzmann equation. Measured interactions were found to be entirely due to overlap of electric double layers with no indication of attractive Van der Waals forces. Results of both types of measurements are in good agreement. The double layer potential strongly depends on the pH, probably as a result of the presence of oxide species on the gold surface. Insight in the double layer potential of polarizable interfaces such as the gold/electrolyte solution interface is the first step for understanding the effect of externally applied potentials on the adsorption behavior of charged species.

摘要

通过在玻璃和硅片上真空沉积15纳米金膜获得的金表面,在水溶液中通过流动电势测量和胶体探针原子力显微镜力测量进行了研究。在力测量中,裸露的和涂金的二氧化硅颗粒(直径6微米)都被用作胶体探针。通过流动电势测量,我们确定了金表面的zeta电势,而通过力测量,通过将数据拟合到DLVO理论或非线性泊松-玻尔兹曼方程获得了扩散双层电势ψ(d)。发现测量到的相互作用完全是由于双电层的重叠,没有范德华引力的迹象。两种测量类型的结果吻合良好。双层电势强烈依赖于pH值,这可能是由于金表面存在氧化物物种的结果。了解可极化界面(如金/电解质溶液界面)的双层电势是理解外部施加电势对带电物种吸附行为影响的第一步。

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