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化学反应的扫描隧道显微镜控制:单分子合成

STM control of chemical reaction: single-molecule synthesis.

作者信息

Hla Saw-Wai, Rieder Karl-Heinz

机构信息

Department of Physics and Astronomy, Nanoscale and Quantum Phenomena Institute, Ohio University, Athens, OH 45701, USA.

出版信息

Annu Rev Phys Chem. 2003;54:307-30. doi: 10.1146/annurev.physchem.54.011002.103852. Epub 2002 Mar 21.

Abstract

The fascinating advances in single atom/molecule manipulation with a scanning tunneling microscope (STM) tip allow scientists to fabricate atomic-scale structures or to probe chemical and physical properties of matters at an atomic level. Owing to these advances, it has become possible for the basic chemical reaction steps, such as dissociation, diffusion, adsorption, readsorption, and bond-formation processes, to be performed by using the STM tip. Complete sequences of chemical reactions are able to induce at a single-molecule level. New molecules can be constructed from the basic molecular building blocks on a one-molecule-at-a-time basis by using a variety of STM manipulation schemes in a systematic step-by-step manner. These achievements open up entirely new opportunities in nanochemistry and nanochemical technology. In this review, various STM manipulation techniques useful in the single-molecule reaction process are reviewed, and their impact on the future of nanoscience and technology are discussed.

摘要

利用扫描隧道显微镜(STM)针尖进行单原子/分子操纵所取得的惊人进展,使科学家能够制造原子尺度的结构,或在原子水平上探测物质的化学和物理性质。由于这些进展,利用STM针尖来执行诸如解离、扩散、吸附、再吸附和键形成过程等基本化学反应步骤已成为可能。完整的化学反应序列能够在单分子水平上诱导产生。通过以系统的逐步方式使用各种STM操纵方案,可以一次一个分子地从基本分子构建单元构建新分子。这些成果为纳米化学和纳米化学技术开辟了全新的机遇。在本综述中,我们回顾了在单分子反应过程中有用的各种STM操纵技术,并讨论了它们对纳米科学和技术未来的影响。

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