Luminescent materials based on copper complexes are currently receiving increasing attention because of their rich photophysical properties, opening a wide field of applications. The copper iodide clusters formulated [Cu4I4L4] (L = ligand), are particularly relevant for the development of multifunctional materials based on their luminescence stimuli-responsive properties. In this context, controlling and modulating their photophysical properties is crucial and this can only be achieved by thorough understanding of the origin of the optical properties. We thus report here, the comparative study of a series of cubane copper iodide clusters coordinated by different phosphine ligands, with the goal of analyzing the effect of the ligands nature ...
An original copper(I) iodide cluster of novel geometry obtained by using a diphosphine ligand is rep...
International audienceAn original copper(I) iodide cluster of novel geometry obtained by using a dip...
International audienceAn original copper(I) iodide cluster of novel geometry obtained by using a dip...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
Luminescent materials based on copper complexes are currently receiving increasing attention because...
An original copper(I) iodide cluster of novel geometry obtained by using a diphosphine ligand is rep...
International audienceAn original copper(I) iodide cluster of novel geometry obtained by using a dip...
International audienceAn original copper(I) iodide cluster of novel geometry obtained by using a dip...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
International audienceLuminescent materials based on copper complexes are currently receiving increa...
Luminescent materials based on copper complexes are currently receiving increasing attention because...
An original copper(I) iodide cluster of novel geometry obtained by using a diphosphine ligand is rep...
International audienceAn original copper(I) iodide cluster of novel geometry obtained by using a dip...
International audienceAn original copper(I) iodide cluster of novel geometry obtained by using a dip...