Nanoscale Physics Research Laboratory, The University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.
J Phys Condens Matter. 2010 Jul 7;22(26):264001. doi: 10.1088/0953-8984/22/26/264001. Epub 2010 Jun 14.
Time-resolved scanning tunnelling microscopy (STM) and its application in molecular science are reviewed. STM can image individual atoms and molecules and thus is able to observe the results of molecular processes such as diffusion, desorption, configuration switching, bond-breaking and chemistry, on the atomic scale. This review will introduce time-resolved STM, its experimental limitations and implementations with particular emphasis on thermally activated and tunnelling current induced molecular processes. It will briefly examine the push towards ultrafast imaging. In general, results achieved by time-resolved STM demonstrate the necessity of both space and time resolution for fully characterizing molecular processes on the atomic scale.
时间分辨扫描隧道显微镜(STM)及其在分子科学中的应用综述。STM 可以成像单个原子和分子,因此能够在原子尺度上观察到扩散、解吸、构象转变、键断裂和化学等分子过程的结果。本综述将介绍时间分辨 STM 及其实验限制以及在热激活和隧道电流诱导分子过程中的应用,特别强调这两方面。本文还将简要探讨向超快成像发展的趋势。总的来说,时间分辨 STM 的研究结果表明,在原子尺度上全面描述分子过程需要空间和时间分辨率。