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Effect of chemical termination of self-assembled organic monolayers on the tip induced local anodic oxidation of silicon(100)

机译:自组装有机单层化学终止对尖端诱导的硅局部阳极氧化的影响(100)

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We evaluated the scanning probe microscope based anodization process of silicon(lOO) terminated by organic monolayers of the same thickness but with different surface properties. The surface energy of these monolayers with its dispersive and polar component was determined by contact angle measurements. We discovered that the anodization oxide characteristics depend ceteris paribus clearly on the surface properties of the sample. With an increased polar component, and therefore hydrophilic character of the surface, the formed oxide structures became broader and thinner. On the other hand a hydrophilic surface allowed the generation of oxide structures at higher tip velocities and lower applied voltages. The absolute amount of formed oxide is independent of the monolayer indicating a dominating influence of initially formed oxide on the following oxidation process.
机译:我们评估了基于扫描探针显微镜的硅(100)的阳极氧化工艺,该工艺被相同厚度但具有不同表面特性的有机单分子层终止。这些单层及其分散和极性成分的表面能通过接触角测量来确定。我们发现,阳极氧化的氧化物特性明显取决于样品的表面特性。随着极性组分的增加,以及因此表面的亲水性,所形成的氧化物结构变得更宽和更薄。另一方面,亲水性表面允许以较高的尖端速度和较低的施加电压产生氧化物结构。形成的氧化物的绝对量与单层无关,这表明初始形成的氧化物对随后的氧化过程具有主要影响。

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