| Literature DB >> 25832804 |
José I Urgel1, David Ecija2,3, Willi Auwärter4, Daphné Stassen5, Davide Bonifazi6,7, Johannes V Barth1.
Abstract
The orthogonal coordinative properties of tetrapyrrole macrocycles and nitrile ligands have been used in a multistep procedure towards interfacial d-f hetero-bimetallic nanoarchitectures based on a free-base porphyrin derivative functionalized with meso-cyanobiphenylene substituents. Molecular-level scanning tunneling microscopy studies reveal that the porphyrin module alone self-assembles on Ag(111) in a close-packed layer with a square unit cell. Upon co-deposition of Gd atoms, a square-planar motif is formed that reflects the fourfold coordination of CN ligands to the rare-earth centers. The resulting nanoporous network morphology is retained following exposure to a beam of Co atoms, which induces selective porphyrin metalation and ultimately yields a gridlike 2D metallosupramolecular architecture.Entities:
Keywords: d-f metal-organic networks; lanthanides; orthogonal interactions; porphyrinoids; scanning tunneling microscopy; transition metals
Year: 2015 PMID: 25832804 DOI: 10.1002/anie.201410802
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336