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Updated: Aug 20, 2026

Hand Controlled Manipulation of Single Molecules via a Scanning Probe Microscope with a 3D Virtual Reality Interface
Published on: October 2, 2016
Controlled low-temperature molecular manipulation of sexiphenyl molecules on Ag111 using scanning tunneling
Saw-Wai Hla1, Kai-Felix Braun, Bernhard Wassermann
1Physics & Astronomy Department, Ohio University, Nanoscale and Quantum Phenomena Institute, Athens, Ohio 45701, USA. hla@ohio.edu
Abstract:
A novel scanning tunneling microscope manipulation scheme for a controlled molecular transport of weakly adsorbed molecules is demonstrated. Single sexiphenyl molecules adsorbed on a Ag(111) surface at 6 K are shot towards single silver atoms by excitation with the tip. To achieve atomically straight shooting paths, an electron resonator consisting of linear standing-wave fronts is constructed. The sexiphenyl manipulation signals reveal a pi ring flipping as the molecule moves from the hcp to fcc site. Ab initio calculations show an incorporation of the Ag atom below the center of a pi ring.

