By an accurate knowledge and control of chromophore metal–oxygen distances
[3], local environment distortions [6–8], cation order–disorder phenomena [9,10], structural relaxation or covalence effects [11]etc., the bandgap energies [12–14], metal–ligand charge transfers
[8] and crystal field intensities and energies on chromophore ions in a particular coordination environment can be tuned [11,12,15], and this is of paramount importance to optimize the coloring properties or to discover new ceramic pigments [16].
By an accurate knowledge and control of chromophore metal–oxygen distances[3], local environment distortions [6–8], cation order–disorder phenomena [9,10], structural relaxation or covalence effects [11]etc., the bandgap energies [12–14], metal–ligand charge transfers[8] and crystal field intensities and energies on chromophore ions in a particular coordination environment can be tuned [11,12,15], and this is of paramount importance to optimize the coloring properties or to discover new ceramic pigments [16].
การแปล กรุณารอสักครู่..
