Electrochemical Switch‐On of Nonlinear Optical Response in a Nitro‐Functionalized Arylimido‐Polyoxometalate
Abstract
ABSTRACT Electrochemical switch‐on of second‐order non‐linear optical (NLO) responses ( β ) has been demonstrated in a polyoxometalate (POM) based chromophore (POMophore) for the first time. Reduction of the POM in a POM‐imidoaryl‐NO 2 derivative invokes an up to 15‐fold off/on switchable increase in intensity of scattered frequency‐doubled light, and the highest “on” state β yet reported for a redox‐cyclable POMophore. Computational and spectroscopic studies show that in the oxidized state, directionally opposed charge transfer (CT) transitions to POM and ─NO 2 result in a low net β . Upon reduction, the POM becomes a much weaker CT acceptor, resulting in more dipolar imido‐aryl to nitro CT, and thus enhanced NLO response.
Article Details
Authors (8)
Claire F. Jones
School of Chemistry Pharmacy and Pharmacology University of East Anglia Norwich UK
Bethany R. Hood
School of Chemistry University of East Anglia Norwich UK
Yovan de Coene
Department of Chemistry, Molecular Imaging and Photonics, KU Leuven, Celestijnenlaan 200D, Heverlee 3001, Belgium
Hayleigh Kearns
Department of Pure and Applied Chemistry University of Strathclyde Glasgow UK
Karen Faulds
Benoît Champagne
Laboratory of Theoretical Chemistry, Namur Institute of Structured Matter, University of Namur , Rue de Bruxelles 61, Namur 5000,
Koen Clays
Department of Chemistry University of Leuven Leuven Belgium
John Fielden