4.8 Article

Assembly and Manipulation of a Prototypical N-Heterocyclic Carbene with a Metalloporphyrin Pedestal on a Solid Surface

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 143, Issue 11, Pages 4433-4439

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jacs.1c01229

Keywords

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Funding

  1. German Research Foundation (DFG) (through the priority programme COORNETs) [1928]
  2. Advanced Characterization of Materials CDT (EPSRC)
  3. Advanced Characterization of Materials CDT (SFI)
  4. China Scholarship Council (CSC)
  5. Diamond Light Source [SI24320-1]
  6. Centro Svizzero di Calcolo Scientifico (CSCS), Lugano, Switzerland [uzh11]
  7. German Research Foundation (DFG) (through the TUM International Graduate School of Science and Engineering) [GSC 81]
  8. German Research Foundation (DFG) (through the IGSSE)
  9. German Research Foundation (DFG) (through the e-conversion Cluster of Excellence)
  10. German Research Foundation (DFG) (through the Heisenberg professorship)

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Controlling the arrangement of N-heterocyclic carbenes (NHCs) on solid surfaces is achieved by introducing Ru porphyrins as a control agent, allowing for precise and reversible functionalization on an atomic scale. This arrangement enables the creation of patterned structures on the nanometer scale through controlled manipulation.
The controlled arrangement of N-heterocyclic carbenes (NHCs) on solid surfaces is a current challenge of surface functionalization. We introduce a strategy of using Ru porphyrins in order to control both the orientation and lateral arrangement of NHCs on a planar surface. The coupling of the NHC to the Ru porphyrin is a facile process which takes place on the interface: we apply NHCs as functional, robust pillars on well-defined, preassembled Ru porphyrin monolayers on silver and characterize these interfaces with atomic precision via a battery of experimental techniques and theoretical considerations. The NHCs assemble at room temperature modularly and reversibly on the Ru porphyrin arrays. We demonstrate a selective and complete functionalization of the Ru centers. With its binding, the NHC modifies the interaction of the Ru porphyrin with the Ag surface, displacing the Ru atom by 1 angstrom away from the surface. This arrangement of NHCs allows us to address individual ligands by controlled manipulation with the tip of a scanning tunneling microscope, creating patterned structures on the nanometer scale.

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