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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Steering the Self-Assembly of Octadecylamine Monolayers on Mica by Controlled Mechanical Energy Transfer from the AFM Tip
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Steering the Self-Assembly of Octadecylamine Monolayers on Mica by Controlled Mechanical Energy Transfer from the AFM Tip

机译:通过AFM尖端中受控的机械能转移,控制云母上十八烷基胺单分子膜的自组装

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摘要

We have studied the effect of mechanical energy transfer from the tip of an atomic force microscope on the dynamics of self-assembly of monolayer films of octadecylamine on mica. The formation of the self-assembled film proceeds in two successive stages, the first being a fast adsorption from solution that follows a Langmuir isotherm. The second is a slower process of island growth by aggregation of the molecules dispersed on the surface. We found that the dynamics of aggregation can be altered substantially by the addition of mechanical energy into the system through controlled tip-surface interactions. This leads to both the creation of pinholes in existing islands as a consequence of vacancy concentration and to the assembly of residual molecules into more compact islands.
机译:我们已经研究了从原子力显微镜的尖端转移机械能对十八烷基胺在云母上单层膜自组装动力学的影响。自组装膜的形成过程分为两个连续的阶段,第一阶段是遵循Langmuir等温线从溶液中快速吸附。第二个是由于分散在表面上的分子聚集而使岛生长的过程变慢。我们发现,通过控制尖端与表面的相互作用将机械能添加到系统中,可以大大改变聚集的动力学。这导致由于空位集中而在现有岛中产生针孔,并导致残余分子组装成更紧凑的岛。

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