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Published on: March 4, 2021
Stable Au(111) Hexagonal Reconstruction Induced by Perchlorinated Nanographene Molecules
Antoine Hinaut1, Sebastian Scherb1, Xuelin Yao2
1Department of Physics, University of Basel, Klingelbergstrasse 82, 4056 Basel, Switzerland.
Large organic molecules deposited on gold create a hexagonal surface reconstruction. This new structure provides a periodic lattice of anchoring sites, useful for surface science applications.
Area of Science:
- Surface science
- Materials science
- Nanotechnology
Background:
- Surface reconstructions significantly impact molecular adsorption and arrangement.
- The Au(111) surface commonly exhibits a herringbone reconstruction with reactive elbow sites.
Purpose of the Study:
- To investigate the structural changes on a Au(111) surface after depositing large organic perchlorinated molecules.
- To understand the role of annealing on molecular arrangement and surface reconstruction.
Main Methods:
- High-vacuum electrospray deposition of organic molecules onto Au(111).
- Noncontact atomic force microscopy (NC-AFM) at room temperature.
- Variable temperature annealing studies.
Main Results:
- Formation of a supramolecular layer of organic molecules.
- Induction of a hexagonal reconstruction on the Au(111) surface by the adsorbed molecules.
- Preservation of the hexagonal Au(111) reconstruction after molecule desorption at high temperatures.
Conclusions:
- Large organic molecules can induce a stable hexagonal reconstruction on Au(111).
- The induced hexagonal reconstruction creates a periodic array of anchoring sites.
- This provides a new platform for controlled molecular or nanoparticle assembly on surfaces.
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