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Mechanism of nanoparticle manipulation by scanning tunnelling microscopy

机译:扫描隧道显微镜操作纳米粒子的机理

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Scanning tunnelling microscopy (STM) imaging was performed on gold surfaces with a large coverage of monodispersed silver nanoparticles soft-landed on the surface from the gas phase. In both ambient and ultra-high vacuum conditions, STM scanning was found to displace the particles out of the scanning area, due to weak adhesion of the particles to the substrate surface. Calculations based on contact mechanics and electrostatics show that the particles can overcome the force of adhesion to the surface and jump onto the STM tip beyond the tunnelling distance. The observation provides the possibility for patterning or arranging nanoparticles on a surface, which is demonstrated, and offers the potential for a multiplexed approach to create very precise surface patterns and particle arrangements.
机译:在金表面上进行扫描隧道显微镜(STM)成像,从气相软着陆到表面的大面积单分散银纳米颗粒被覆盖。在环境和超高真空条件下,由于颗粒与基材表面的粘附力较弱,因此发现STM扫描会将颗粒移出扫描区域。基于接触力学和静电的计算表明,颗粒可以克服与表面的粘附力,并跳越STM尖端超过隧穿距离。观察结果提供了在表面上构图或排列纳米颗粒的可能性,这已得到证明,并为建立非常精确的表面图案和颗粒排列的多元方法提供了可能。

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