Patil S, Matei G, Grabowski C A, Hoffmann P M, Mukhopadhyay A
Department of Physics and Astronomy, Wayne State University, Detroit, Michigan, USA.
Langmuir. 2007 Apr 24;23(9):4988-92. doi: 10.1021/la063745c. Epub 2007 Mar 24.
We have studied the dynamic structure of thin (approximately a few nanometers) liquid films of a nearly spherical, nonpolar molecule tetrakis(2-ethylhexoxy)silane (TEHOS) by using a combination of atomic force microscopy (AFM) and fluorescence correlation spectroscopy (FCS). Ultra-sensitive interferometer-based AFM was used to determine the stiffness (force gradient) and the damping coefficient of the liquid film. The experiments show oscillations in the damping coefficient with a period of approximately 1 nm, which is consistent with the molecular dimension of TEHOS as well as previous X-ray reflectivity measurements. Additionally, we performed FCS experiments for direct determination of the molecular dynamics within the liquid film. From the fluctuation autocorrelation curve, we measured the translational diffusion of the probe molecule embedded within the fluid film formed on a solid substrate. The autocorrelation function was best fitted with two components, which indicate that the dynamics are heterogeneous in nature. However, the heterogeneity is not as pronounced as had been previously observed for molecularly thin liquid films sandwiched between two solid substrates.
我们通过结合原子力显微镜(AFM)和荧光相关光谱(FCS),研究了近球形非极性分子四(2-乙基己氧基)硅烷(TEHOS)的薄(约几纳米)液膜的动态结构。基于超灵敏干涉仪的AFM用于确定液膜的刚度(力梯度)和阻尼系数。实验表明,阻尼系数存在振荡,周期约为1纳米,这与TEHOS的分子尺寸以及先前的X射线反射率测量结果一致。此外,我们进行了FCS实验,以直接测定液膜内的分子动力学。从涨落自相关曲线中,我们测量了嵌入在固体基质上形成的流体膜内的探针分子的平动扩散。自相关函数最好用两个分量拟合,这表明动力学本质上是不均匀的。然而,这种不均匀性并不像先前在夹在两个固体基质之间的分子薄液膜中观察到的那样明显。