Abstract
Electron transfer in weakly coupled molecules typically occurs via a transient charging of the molecule by tunneling electrons. We report on the permanent electron injection into a single molecule in a controlled manner by employing low-temperature (LT) scanning tunneling microscopy (STM). Our model system is Au(III) 5,10,15,20-tetraphenylporphyrin (AuTPP) single molecules physisorbed on a single-crystal Au(111) surface. The results of our combined topographic STM images, tunnel conductance dI/dV spectra and two-dimensional spatial dI/dV mapping experiments support a switching of the molecular charge state of AuIIITPP on Au(111) induced by STM manipulation. We successfully realized STM tip-induced chemical reduction reactions in single AuTPP molecules, reducing AuIIITPP to AuIITPP, with the extra electron distributed either preferentially in a 5d state of the center gold ion or the aromatic (pi-conjugated) tetrapyrrole macrocycle of the porphyrin ligand. Details of the electron transfer process were identified and visualized with intra-molecular resolution by single-molecule tunneling spectroscopy and orbital mapping.
Original language | English |
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Pages (from-to) | 157-162 |
Number of pages | 6 |
Journal | Surface Science |
Volume | 678 |
DOIs | |
Publication status | Published - 2018 |
Fields of science
- 210006 Nanotechnology
- 103 Physics, Astronomy
- 103011 Semiconductor physics
- 103018 Materials physics
- 202032 Photovoltaics
- 103009 Solid state physics
- 103017 Magnetism
JKU Focus areas
- Engineering and Natural Sciences (in general)