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ASingle-Molecule Chemical Reaction Studied by High-ResolutionAtomic Force Microscopy and Scanning Tunneling Microscopy InducedLight Emission

机译:一个高分辨率研究单分子化学反应原子力显微镜和扫描隧道显微镜发光量

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摘要

Atomic force microscopy (AFM) as well as scanning tunneling microscopy induced light emission (STM-LE) are, each on their own, powerful tools used to investigate a large variety of properties of single molecules adsorbed on a surface. However, accessing both structural information by AFM as well as optical information by STM-LE on the same molecule so far remains elusive. We present a combined high-resolution AFM and STM-LE study on single metal-oxide phthalocyanines. Using atomic manipulation, the molecules can be deliberately reduced. We demonstrate structure elucidation and adsorption geometry determination of single molecules with atomic resolution combined with optical characterization by STM-LE and the possibility of investigating the change in a molecule’s exciton emission intensity by a chemical reaction.
机译:原子力显微镜(AFM)和扫描隧道显微镜诱导的光发射(STM-LE)各自都是功能强大的工具,用于研究吸附在表面上的单分子的多种特性。但是,到目前为止,通过AFM访问结构信息以及通过STM-LE访问光学信息仍然难以捉摸。我们提出了对单个金属氧化物酞菁的高分辨率AFM和STM-LE组合研究。使用原子操纵,可以故意还原分子。我们展示了具有原子分辨率的单个分子的结构解析和吸附几何结构测定,以及通过STM-LE进行的光学表征,以及通过化学反应研究分子激子发射强度变化的可能性。

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