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Phys. Rev. Lett. 97, 266603 (2006) [4 pages]

Manipulation of the Kondo Effect via Two-Dimensional Molecular Assembly

Violeta Iancu, Aparna Deshpande, and Saw-Wai Hla
Nanoscale & Quantum Phenomena Institute, Department of Physics and Astronomy, Ohio University, Athens, Ohio 45701, USA
Received 26 May 2006; published 28 December 2006

We report the manipulation of a Kondo resonance originating from the spin-electron interactions between a two-dimensional molecular assembly of TBrPP-Co molecules and a Cu(111) surface at 4.6 K. By manipulating nearest-neighbor molecules with a scanning tunneling microscope tip we are able to tune the spin-electron coupling of the center molecule inside a hexagonal molecular assembly in a controlled step-by-step manner. The Kondo temperature increases from 105 to 170 K with decreasing the number of nearest neighbor molecules from six to zero. The scattering of surface electrons by the molecules located at edges of the molecular layer reduces the spin-electron coupling strength for the molecules inside the layer. Investigations of different molecular arrangements indicate that the observed Kondo resonance is independent on the molecular lattice.

©2006 The American Physical Society

URL: http://link.aps.org/doi/10.1103/PhysRevLett.97.266603
DOI: 10.1103/PhysRevLett.97.266603
PACS: 72.15.Qm; 68.37.Ef; 82.37.Gk
  • 72.15.Qm
    Scattering mechanisms and Kondo effect (metals/alloys)
  • 68.37.Ef
    Scanning tunneling microscopy of surfaces, interfaces and thin films including chemistry induced with STM
  • 82.37.Gk
    STM and AFM manipulations of a single molecule (chemical kinetics)
  • YEAR: 2006

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