Alkylsilane self-assembled monolayers (SAMs) are often used as model substrates for their ease of preparation and hydrophobic properties. We have observed that these atomically smooth monolayers also provide a slip boundary condition for dewetting films composed of unentangled polymers. This slip length, an indirect measure of the friction between a given liquid and different solids, is switchable and can be increased [Fetzer et al., Phys. Rev. Lett. 2005; B\"aumchen et al. J. Phys.: Cond. Matt. 2012] if the alkyl chain length is changed from 18 to 12 backbone carbons, for example. Typically, this change in boundary condition is affected in a quantized way, using one or the other alkyl chain length, thus obtaining one or the other slip length. Here, we present results in which this SAM structure is changed in a continuous way. We prepare SAMs containing bidisperse mixed SAMs of alkyl silanes, with the composition as a control parameter. We find that all the mixed SAMs we investigated show an enhanced slip boundary condition as compared to the single-component SAMs. The slip boundary condition is accessed using optical and atomic force microscopy, and we describe these observations in the context of X-ray reflectivity measurements. The slip length, varying over nearly two orders of magnitude, of identical polymer melts on chemically similar SAMs is found to correlate with the density of exposed alkyl chains. Our results demonstrate the importance of a well characterized solid/liquid pair, down to the angstrom level, when discussing friction between a liquid and a solid.
翻译: Alkylilane 自行组装的单层( SAMs) 经常被用作模型基底, 以方便其准备和防水特性。 我们观察到, 这些原子平滑的单层也为由未缠绕的聚合物组成的调湿胶片提供了一个滑动的边框条件。 这种滑动长度是衡量特定液体和不同固体之间摩擦的一种间接尺度,可以转换并可增加[Fetzer 等人, Phys. Rev. Lett. 2005; B\"aumchen 和 J. J. Phys.: Cond. Matt. 2012] 。 如果电离子线链长度从18个改为12个主干碳。 典型的情况是, 边界条件的这种变化以四分立的方式受到影响, 从而获得一个或另一个滑动长度。 在这里, 我们展示了SAM结构持续改变的结果。 我们准备SAM结构中含有双向的碳基锡尔内混合的SAM 。 和双向的金属结构作为控制参数。 我们发现, 对比SAM 状态显示Slam 的顺序是比SAM 。