论文标题

在液体环境中跟踪单个原子

Tracking single atoms in a liquid environment

论文作者

Clark, Nicholas, Kelly, Daniel J., Zhou, Mingwei, Zou, Yi-Chao, Myung, Chang Woo, Hopkinson, David G., Schran, Christoph, Michaelides, Angelos, Gorbachev, Roman, Haigh, Sarah J.

论文摘要

单金属原子的化学行为在很大程度上取决于局部协调环境,包括与基材以及周围气体或液体的相互作用。但是,在原子量表上研究此类系统的关键仪器通常需要较高的真空条件,从而限制了可以研究上述环境参数的程度。在这里,我们开发了一个新的平台,用于对液体中单金属原子进行透射电子显微镜研究,并研究水中单层MOS2晶体表面上单个铂原子的动态行为。为了实现创纪录的单原子分辨率,我们基于2D材料异质结构引入了双液体电池,这使我们能够将两侧的原子较薄的膜淹没,同时将总样品厚度仅为〜70 nm。通过与在高真空条件下成像的相同样本相比,我们揭示了单个原子静止位点和原子跳跃行为的巨大差异,这表明原位成像条件对于获得对单个原子的化学活性的完全了解至关重要。这些发现为具有单个原子精度的化学过程的原位液体成像铺平了道路。

The chemical behaviour of single metal atoms largely depends on the local coordination environment, including interactions with the substrate and with the surrounding gas or liquid. However, the key instrumentation for studying such systems at the atomic scale generally requires high vacuum conditions, limiting the degree to which the aforementioned environmental parameters can be investigated. Here we develop a new platform for transmission electron microscopy investigation of single metal atoms in liquids and study the dynamic behaviour of individual platinum atoms on the surface of a single layer MoS2 crystal in water. To achieve the record single atom resolution, we introduce a double liquid cell based on a 2D material heterostructure, which allows us to submerge an atomically thin membrane with liquid on both sides while maintaining the total specimen thickness of only ~ 70 nm. By comparison with an identical specimen imaged under high vacuum conditions, we reveal drastic differences in the single atom resting sites and atomic hopping behaviour, demonstrating that in situ imaging conditions are essential to gain complete understanding of the chemical activity of individual atoms. These findings pave the way for in situ liquid imaging of chemical processes with single atom precision.

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