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首页> 外文期刊>Angewandte Chemie >Controllable Scission and Seamless Stitching of Metal-Organic Clusters by STM Manipulation
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Controllable Scission and Seamless Stitching of Metal-Organic Clusters by STM Manipulation

机译:STM操作可控制的金属有机团簇的断裂和无缝缝合

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Scanning tunneling microscopy (STM) manipulation techniques have proven to be a powerful method for advanced nanofabrication of artificial molecular architectures on surfaces. With increasing complexity of the studied systems, STM manipulations are then extended to more complicated structural motifs. Previously, the dissociation and construction of various motifs have been achieved, but only in a single direction. In this report, the controllable scission and seamless stitching of metal-organic clusters have been successfully achieved through STM manipulations. The system presented here includes two sorts of hierarchical interactions where coordination bonds hold the metal-organic elementary motifs while hydrogen bonds among elementary motifs are directly involved in bond breakage and re-formation. The key to making this reversible switching successful is the hydrogen bonding, which is comparatively facile to be broken for controllable scission, and, on the other hand, the directional characteristic of hydrogen bonding makes precise stitching feasible.
机译:事实证明,扫描隧道显微镜(STM)操作技术是用于在表面上进行高级纳米制造的人工分子体系结构的强大方法。随着所研究系统的复杂性增加,STM操作随后扩展到更复杂的结构图案。以前,已经实现了各种图案的分离和构建,但是仅在一个方向上进行。在本报告中,通过STM操作成功实现了对金属有机簇的可控断裂和无缝缝合。此处介绍的系统包括两种分层的相互作用,其中配位键保留金属-有机基本基元,而基本基元之间的氢键直接参与键的断裂和重组。使得这种可逆转换成功的关键是氢键,氢键相对容易断裂以控制断裂,另一方面,氢键的方向性使精确的缝合成为可能。

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