Suzuki T, Levy J, Yates J T
Surface Science Center, Department of Chemistry, University of Pittsburgh, Pennsylvania 15260, USA.
Nano Lett. 2006 Jan;6(1):138-43. doi: 10.1021/nl0519635.
The deposition of coronene molecules from scanning tunneling microscope (STM) tips onto a clean Si(001)-2x1 surface at 25 degrees C was investigated. The STM tips, contaminated with coronene, were found to deposit coronene molecules on the clean Si(001) surface, allowing patterns to be generated. Covalent Si-C chemical bonds, formed between the coronene molecules and the Si substrate, froze the flip-flop motion of the adjacent Si-Si dimers on the substrate. In most cases, the mode of coronene bonding to Si(001) is independent of whether deposition occurs from the gas phase or from the STM tip. Despite the covalent chemical bonds formed between the coronene molecule and the Si substrate, the STM tip can drag the coronene laterally on the Si substrate without inducing a chemical change in the molecule. Sharp spikes observed in the tunneling current during the coronene deposition reflect the abrupt decrease of the tip-substrate distance at the instant of transport of the molecule from tip to surface.
研究了在25摄氏度下,将并五苯分子从扫描隧道显微镜(STM)针尖沉积到清洁的Si(001)-2x1表面的过程。发现被并五苯污染的STM针尖会在清洁的Si(001)表面沉积并五苯分子,从而能够生成图案。并五苯分子与Si衬底之间形成的共价Si-C化学键,冻结了衬底上相邻Si-Si二聚体的翻转运动。在大多数情况下,并五苯与Si(001)的键合模式与沉积是从气相还是从STM针尖发生无关。尽管并五苯分子与Si衬底之间形成了共价化学键,但STM针尖仍可在Si衬底上横向拖动并五苯,而不会在分子中引起化学变化。在并五苯沉积过程中隧道电流中观察到的尖锐尖峰,反映了分子从针尖传输到表面瞬间针尖-衬底距离的突然减小。