Nikolaj Moll, Leo Gross, et al.
New Journal of Physics
Resolving individual atoms has always been the ultimate goal of surface microscopy. The scanning tunneling microscope images atomic-scale features on surfaces, but resolving single atoms within an adsorbed molecule remains a great challenge because the tunneling current is primarily sensitive to the local electron density of states close to the Fermi level. We demonstrate imaging of molecules with unprecedented atomic resolution by probing the short-range chemical forces with use of noncontact atomic force microscopy. The key step is functionalizing the microscope's tip apex with suitable, atomically well-defined terminations, such as CO molecules. Our experimental findings are corroborated by ab initio density functional theory calculations. Comparison with theory shows that Pauli repulsion is the source of the atomic resolution, whereas van der Waals and electrostatic forces only add a diffuse attractive background.
Nikolaj Moll, Leo Gross, et al.
New Journal of Physics
Stephan Guide, Asma Jebali, et al.
Optics Express
Michael Ellner, Niko Pavliček, et al.
Nano Letters
Laerte L. Patera, Shadi Fatayer, et al.
Chemical Reviews