Nanoscale Physics Research Laboratory, School of Physics and Astronomy, University of Birmingham, Birmingham, B15 2TT, United Kingdom.
Phys Rev Lett. 2010 Jul 23;105(4):048301. doi: 10.1103/PhysRevLett.105.048301. Epub 2010 Jul 19.
We report the nonlocal desorption of chlorobenzene molecules from the Si(111)-(7×7) surface by charge injection from the laterally distant tip of a scanning tunneling microscope and demonstrate remote control of the manipulation process by precise selection of the atomic site for injection. Nonlocal desorption decays exponentially as a function of radial distance (decay length ∼100 A) from the injection site. Electron injection at corner-hole and faulted middle adatoms sites couples preferentially to the desorption of distant adsorbate molecules. Molecules on the faulted half of the unit cell desorb with higher probability than those on the unfaulted half.
我们报告了通过从扫描隧道显微镜的横向远处尖端注入电荷,从 Si(111)-(7×7)表面非局域解吸氯苯分子,并通过精确选择注入的原子位置来演示对操纵过程的远程控制。非局域解吸作为从注入点的径向距离(衰减长度约为 100Å)的函数呈指数衰减。在顶角和位错中间原子位置的电子注入优先与远距离吸附分子的解吸耦合。与未位错的一半相比,单元晶格的位错一半上的分子具有更高的解吸概率。