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Mechanical gate control for atom-by-atom cluster assembly with scanning probe microscopy

机译:机械门控制,采用扫描探针显微镜进行逐原子簇组装

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摘要

Nanoclusters supported on substrates are of great importance in physics and chemistry as well as in technical applications, such as single-electron transistors and nanocatalysts. The properties of nanoclusters differ significantly from those of either the constituent atoms or the bulk solid, and are highly sensitive to size and chemical composition. Here we propose a novel atom gating technique to assemble various atom clusters composed of a defined number of atoms at room temperature. The present gating operation is based on the transfer of single diffusing atoms among nanospaces governed by gates, which can be opened in response to the chemical interaction force with a scanning probe microscope tip. This method provides an alternative way to create pre-designed atom clusters with different chemical compositions and to evaluate their chemical stabilities, thus enabling investigation into the influence that a single dopant atom incorporated into the host clusters has on a given cluster stability.
机译:支撑在基底上的纳米团簇在物理和化学以及技术应用(例如单电子晶体管和纳米催化剂)中都非常重要。纳米团簇的性质与组成原子或整体固体的性质明显不同,并且对尺寸和化学组成高度敏感。在这里,我们提出了一种新颖的原子门控技术,用于在室温下组装由定义数量的原子组成的各种原子簇。当前的门控操作基于单个扩散原子在由门控制的纳米空间之间的转移,可以响应于与扫描探针显微镜尖端的化学相互作用力而将其打开。该方法提供了另一种方法来创建具有不同化学组成的预先设计的原子团簇并评估其化学稳定性,从而能够研究掺入主体团簇中的单个掺杂原子对给定团簇稳定性的影响。

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