Surface anchoring and dynamics of thiolated azobenzene molecules on Au(111)
Article 2009 en
Authors
JC
Jongweon Cho
NL
Niv Levy
АК
А. Киракосян
Abstract
1 min read
We have investigated the temperature-dependent behavior of thiolated azobenzene molecules on Au(111) using scanning tunneling microscopy. The addition of a thiol functional group to azobenzene molecules leads to increased surface anchoring of single azobenzene molecules to gold. Thiolated azobenzene shows diverse surface morphology and does not form well-ordered structures at low coverage. At elevated temperatures, anchored molecules are observed to spin in place via hindered rotation. By measuring the number of rotating molecules as a function of temperature and using a simple model, we are able to estimate the energy barrier and attempt frequency for thermally induced hindered rotation to be 102±3 meV and 110±2 GHz, respectively.
Matthew Comstock, Niv Levy, А. Киракосян, Jongweon Cho, Frank Lauterwasser, Jessica H. Harvey, David A. Strubbe, Jean Mj Frechet, Dirk Trauner, Steven G. Louie, Michael F. Crommie
Matthew Comstock, David A. Strubbe, Luis Berbil-Bautista, Niv Levy, Jongweon Cho, Daniel A. Poulsen, Jean Mj Frechet, Steven G. Louie, Michael F. Crommie
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