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Non-Symmetrical Sterically Challenged Phenanthroline Ligands and Their Homoleptic Copper(I) Complexes with Improved Excited-State Properties
Authors:Lea Gimeno  Dr Errol Blart  Dr Jean-Noël Rebilly  Marina Coupeau  Magali Allain  Thierry Roisnel  Alexis Quarré de Verneuil  Dr Christophe Gourlaouen  Prof Chantal Daniel  Dr Yann Pellegrin
Institution:1. Université de Nantes, CNRS, CEISAM UMR6230, 44000 Nantes, France;2. ICMMO, UMR 8182, Université Paris Sud, Orsay, 91405 Cedex France;3. Laboratoire MOLTECH-Anjou, UMR CNRS 6200, Université Angers, SFR MATRIX, 2 Bd Lavoisier, 49045 Angers Cedex, France;4. Institut des Sciences Chimiques de Rennes, UMR6226, Université de Rennes CNRS, 35000 Rennes, France;5. Laboratoire de Chimie Quantique, Institut de Chimie, UMR 7177 CNRS, Université de Strasbourg, 4, Rue Blaise Pascal CS 90032, 67081 Strasbourg Cedex, France
Abstract:A strategy is presented to improve the excited state reactivity of homoleptic copper–bis(diimine) complexes CuL2+ by increasing the steric bulk around CuI whereas preserving their stability. Substituting the phenanthroline at the 2-position by a phenyl group allows the implementation of stabilizing intramolecular π stacking within the copper complex, whereas tethering a branched alkyl chain at the 9-position provides enough steric bulk to rise the excited state energy E00. Two novel complexes are studied and compared to symmetrical models. The impact of breaking the symmetry of phenanthroline ligands on the photophysical properties of the complexes is analyzed and rationalized thanks to a combined theoretical and experimental study. The importance of fine-tuning the steric bulk of the N–N chelate in order to stabilize the coordination sphere is demonstrated. Importantly, the excited state reactivity of the newly developed complexes is improved as demonstrated in the frame of a reductive quenching step, evidencing the relevance of our strategy.
Keywords:copper  density functional calculation  homoleptic complexes  photochemistry  reductive quenching
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