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Self-assembled silane monolayers: Fabrication with nanoscale uniformity

机译:自组装硅烷单层:纳米级均匀性的制造

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摘要

Illustrating direct connections between surface chemical events and mechanical and topological characteristics of self-assembled monolayers derived from octadecyltrichlorosilane (OTS) adsorption on Si(100), layers prepared in the presence and absence of moisture have been characterized. Uniform and robust self-assembled monolayers are demonstrated provided the Si(100) surface is fully hydroxylated by treatment in piranha solution and the dried surface is exposed to OTS under strict anhydrous conditions. With nanoscale resolution, the uniform mechanical properties are confirmed by interfacial force microscopy while the uniform topological properties are evident in atomic force microscopy images. The monolayer character of the OTS coverage is confirmed by X-ray photoelectron spectroscopy, ellipsometry, and patterning experiments. Analogous surfaces, prepared in the presence of moisture, exhibit nonuniform topological and mechanical properties.
机译:为了说明十八烷基三氯硅烷(OTS)吸附在Si(100)上的自组装单层的表面化学事件与机械和拓扑特性之间的直接联系,已经表征了在存在和不存在水分的情况下制备的层。如果Si(100)表面通过食人鱼溶液处理完全羟基化,并且干燥表面在严格的无水条件下暴露于OTS,则证明了均匀和坚固的自组装单层。在纳米级分辨率下,界面力显微镜证实了均匀的力学性能,而原子力显微镜图像中均匀的拓扑性能是显而易见的。通过X射线光电子能谱、椭偏仪和图案化实验证实了OTS覆盖的单层特性。在水分存在下制备的类似表面表现出不均匀的拓扑和机械性能。

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