首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Self-assembled monolayer of polyoxometalate on gold surfaces: Quartz crystal microbalance, electrochemistry, and in-situ scanning tunneling microscopy study
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Self-assembled monolayer of polyoxometalate on gold surfaces: Quartz crystal microbalance, electrochemistry, and in-situ scanning tunneling microscopy study

机译:金表面上多金属氧酸盐的自组装单层:石英晶体微量天平,电化学和原位扫描隧道显微镜研究

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A new kind of inorganic self-assembled monolayer (SAM) was prepared by spontaneous adsorption of polyoxometalate anion, AsMo11VO404-, onto a gold surface from acidic aqueous solution. The adsorption process, structure, and electrochemical properties of the AsMo11VO404- SAM were investigated by quartz crystal microbalance (QCM), electrochemistry, and scanning tunneling microscopy (STM). The QCM data suggested that the self-assembling process could be described in terms of the Langmuir adsorption model, providing the value of the free energy of adsorption at -20 KJ mol(-1). The maximum surface coverage of the AsMo11VO404- SAM on gold surface was determined from the QCM data to be 1.7 x 10(-10) mol cm(-2), corresponding to a close-packed monolayer of AsMo11VO404- anion. The analysis of the voltammograms of the AsMo11VO404- SAM on gold electrode showed three pairs of reversible peaks with an equal surface coverage of 1.78 x 10(-10) mol cm(-2) for each of the peaks, and the value was agreed well with the QCM data. In-situ STM image demonstrated that the AsMo11VO404- SAM was very uniform and no aggregates or multilayer could be observed. Furthermore, the high-resolution STM images revealed that the AsMo11VO404- SAM on Au(lll) surface was composed of square unit cells with a lattice space of 10-11 Angstrom at +0.7 V (vs AgAgCl). The value was quite close to the diameter of AsMo11VO404- anion obtained from X-ray crystallographic study. The surface coverage of the AsMo11VO404- SAM on gold electrode estimated from the STM image was around 1.8 x 10(-10) mol cm(-2), which was consistent with the QCM and electrochemical results. [References: 91]
机译:通过将多金属氧酸盐阴离子AsMo11VO404-从酸性水溶液自然吸附到金表面,制备了一种新型的无机自组装单分子膜(SAM)。用石英晶体微量天平(QCM),电化学和扫描隧道显微镜(STM)研究了AsMo11VO404-SAM的吸附过程,结构和电化学性能。 QCM数据表明,可以用Langmuir吸附模型描述自组装过程,从而提供-20 KJ mol(-1)时吸附的自由能值。根据QCM数据确定AsMo11VO404- SAM在金表面的最大表面覆盖率为1.7 x 10(-10)mol cm(-2),对应于AsMo11VO404-阴离子的密排单层。分析金电极上的AsMo11VO404-SAM的伏安图,结果显示了三对可逆峰,每个峰的表面覆盖率相等,为1.78 x 10(-10)mol cm(-2),该值被很好地同意与QCM数据。原位STM图像显示AsMo11VO404-SAM非常均匀,没有观察到聚集体或多层。此外,高分辨率STM图像显示,Au(III)表面上的AsMo11VO404-SAM由正方形晶胞组成,晶格空间在+0.7 V(vs Ag AgCl)时为10-11埃。该值非常接近从X射线晶体学研究获得的AsMo11VO404-阴离子的直径。根据STM图像估算,AsMo11VO404- SAM在金电极上的表面覆盖范围约为1.8 x 10(-10)mol cm(-2),这与QCM和电化学结果一致。 [参考:91]

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