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Phenoxyaluminum(salophen) Scaffolds: Synthesis, Electrochemical Properties, and Self‐Assembly at Surfaces of Multifunctional Systems

Authors :
Luca Mengozzi
Matteo Iurlo
Massimo Marcaccio
Mohamed El Garah
Pier Giorgio Cozzi
Paolo Samorì
Artur Ciesielski
Andrea Fiorani
Francesco Paolucci
Andrea Gualandi
Mengozzi, Luca
El Garah, Mohamed
Gualandi, Andrea
Iurlo, Matteo
Fiorani, Andrea
Ciesielski, Artur
Marcaccio, Massimo
Paolucci, Francesco
Samorì, Paolo
Cozzi, Pier Giorgio
Source :
Chemistry – A European Journal. 24:11954-11960
Publication Year :
2018
Publisher :
Wiley, 2018.

Abstract

Salophens and Salens are Schiff bases generated through the condensation of two equivalents of salicylaldehyde with either 1,2-phenylenediamines or aliphatic diamines, respectively. Both ligands have been extensively exploited as key building blocks in coordination chemistry and catalysis. In particular, their metal complexes have been widely used for various catalytical transformations with high yield and selectivity. Through the modification of the phenol unit it is possible to tune the steric hindrance and electronic properties of Salophen and Salen. The introduction of long aliphatic chains in salicylaldehydes can be used to promote their self-assembly into ordered supramolecular structures on solid surfaces. Herein, we report a novel method towards the facile synthesis of robust and air-stable [Al(Salophen)] derivatives capable of undergoing spontaneous self-assembly at the graphite/solution interface forming highly-ordered nanopatterns. The new synthetic approach relies on the use of [MeAlIII (Salophen)] as a building unit to introduce, via a simple acid/base reaction with functionalized acidic phenol derivatives, selected frameworks integrating multiple functions for efficient surface decoration. STM imaging at the solid/liquid interface made it possible to monitor the formation of ordered supramolecular structures. In addition, the redox properties of the Salophen derivatives functionalized with ferrocene units in solution and on surface were unraveled by cyclic voltammetry. The use of a five-coordinate aluminum alkyl Salophen precursor enables the tailoring of new Salophen molecules capable of undergoing controlled self-assembly on HOPG, and thereby it can be exploited to introduce multiple functionalities with subnanometer precision at surfaces, ultimately forming ordered functional patterns.

Details

ISSN :
15213765 and 09476539
Volume :
24
Database :
OpenAIRE
Journal :
Chemistry – A European Journal
Accession number :
edsair.doi.dedup.....688d14061427784be457fae576b7b9b8
Full Text :
https://doi.org/10.1002/chem.201801118