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使用压电激发的毫米级悬臂传感器在纳摩尔浓度下监测金表面上 1-十六烷硫醇的自组装单层。

Monitoring of the self-assembled monolayer of 1-hexadecanethiol on a gold surface at nanomolar concentration using a piezo-excited millimeter-sized cantilever sensor.

机构信息

Department of Chemical and Biological Engineering, Drexel University, Philadelphia, Pennsylvania 19104, USA.

出版信息

Langmuir. 2005 Dec 6;21(25):11568-73. doi: 10.1021/la0519960.

Abstract

In this paper, we describe a new method of measuring alkanethiol monolayer formation on a gold surface. A gold-coated millimeter-sized rectangular-shaped lead zirconate titanate (PZT) cantilever of dimensions 3.5 x 2 x 0.05 mm, previously shown to detect a picogram level of mass change, was used to measure the adsorption kinetics of 1-hexadecanethiol in ethanol over six orders of concentration range (1 nM to 10 mM) in real time. The flexural mode of cantilever vibration, 45.5 +/- 0.01 kHz, was monitored during the self-assembly. The total resonant frequency change obtained for the 1 nM, 10 nM, 100 nM, 1 microM, 4 mM, 8 mM, and 10 mM thiol concentrations were 116 +/- 2 (n = 2), 225 (n = 1), 270 +/- 10 (n = 2), 440 +/- 10 (n = 2), 900 +/- 10 (n = 2), 900 +/- 10 (n = 2), and 900 +/- 10 (n = 2) Hz, respectively. These results compare favorably to literature results in that the rate of the monolayer formation is concentration-dependent and the exponential change during adsorption follows the reversible first-order Langmuir kinetic model. The rate constants of adsorption and desorption were 0.061 M(-1) s(-1) and 3.61 x 10(-4) s(-1), respectively. The significance of the results is that millimeter-sized PZT cantilevers can be used in real-time for characterizing self-assembly of monolayer formation at nanomolar concentration levels. In addition, at 1 nM, the adsorption was found not to be diffusion limited.

摘要

在本文中,我们描述了一种测量金表面烷硫醇单层形成的新方法。我们使用了一个之前已被证明可以检测皮克数量级质量变化的镀金毫米尺寸的锆钛酸铅(PZT)矩形悬臂梁(尺寸为 3.5 x 2 x 0.05 毫米),实时测量了在乙醇中浓度范围为 1 nM 至 10 mM 的六个数量级的 1-十六烷硫醇的吸附动力学。在自组装过程中,监测了悬臂梁振动的弯曲模式,频率为 45.5 +/- 0.01 kHz。对于 1 nM、10 nM、100 nM、1 microM、4 mM、8 mM 和 10 mM 硫醇浓度,获得的总共振频率变化分别为 116 +/- 2(n = 2)、225(n = 1)、270 +/- 10(n = 2)、440 +/- 10(n = 2)、900 +/- 10(n = 2)、900 +/- 10(n = 2)和 900 +/- 10(n = 2)Hz。这些结果与文献结果相比具有优势,因为单层形成的速率与浓度有关,并且在吸附过程中呈指数变化,符合可逆的一级朗缪尔动力学模型。吸附和解吸的速率常数分别为 0.061 M(-1) s(-1)和 3.61 x 10(-4) s(-1)。结果的意义在于,毫米尺寸的 PZT 悬臂梁可用于实时表征纳摩尔浓度水平下的单层自组装形成。此外,在 1 nM 时,发现吸附不是扩散限制的。

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