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吸附在碳纳米管表面的原子的相变。

Phase transitions of adsorbed atoms on the surface of a carbon nanotube.

机构信息

Department of Physics, University of Washington, Seattle, WA 98195-1560, USA.

出版信息

Science. 2010 Jan 29;327(5965):552-5. doi: 10.1126/science.1182507.

Abstract

Phase transitions of adsorbed atoms and molecules on two-dimensional substrates are well explored, but similar transitions in the one-dimensional limit have been more difficult to study experimentally. Suspended carbon nanotubes can act as nanoscale resonators with remarkable electromechanical properties and the ability to detect adsorption at the level of single atoms. We used single-walled carbon nanotube resonators to study the phase behavior of adsorbed argon and krypton atoms as well as their coupling to the substrate electrons. By monitoring the resonance frequency in the presence of gases, we observed the formation of monolayers on the cylindrical surface, phase transitions within them, and simultaneous modification of the electrical conductance.

摘要

二维衬底上吸附原子和分子的相转变已经得到了很好的研究,但在一维极限下的类似转变在实验上更难研究。悬浮的碳纳米管可以作为纳米级谐振器,具有显著的机电性能和探测单个原子吸附的能力。我们使用单壁碳纳米管谐振器来研究吸附氩原子和氪原子的相行为,以及它们与衬底电子的耦合。通过在存在气体的情况下监测共振频率,我们观察到在圆柱表面上形成单层、其中的相转变以及同时对电导的修饰。

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