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Jumping, Rotating, and Flapping: The Atomic-Scale Motion of Thiophene on Cu(111)

Authors :
Marco Sacchi
B. J. Hinch
Holly Hedgeland
Barbara A. J. Lechner
Paul C. Dastoor
Andrew Jardine
William Allison
John Ellis
Stephen J. Jenkins
Source :
The journal of physical chemistry letters. 4(11)
Publication Year :
2015

Abstract

Self-assembled monolayers of sulfur-containing heterocycles and linear oligomers containing thiophene groups have been widely employed in organic electronic applications. Here, we investigate the dynamics of isolated thiophene molecules on Cu(111) by combining helium spin-echo (HeSE) spectroscopy with density functional theory calculations. We show that the thiophene/Cu(111) system displays a rich array of aperiodic dynamical phenomena that include jump diffusion between adjacent atop sites over a 59-62 meV barrier and activated rotation around a sulfur-copper anchor, two processes that have been observed previously for related systems. In addition, we present experimental evidence for a new, weakly activated process, the flapping of the molecular ring. Repulsive inter-adsorbate interactions and an exceptionally high friction coefficient of 5 ± 2 ps(-1) are also observed. These experiments demonstrate the versatility of the HeSE technique, and the quantitative information extracted in a detailed analysis provides an ideal benchmark for state-of-the-art theoretical techniques including nonlocal adsorbate-substrate interactions.

Details

ISSN :
19487185
Volume :
4
Issue :
11
Database :
OpenAIRE
Journal :
The journal of physical chemistry letters
Accession number :
edsair.doi.dedup.....d20fddb6fda22922cab6a4fa8062ea7b