Investigation on relationship between charge transfer position and dielectric definition of average energy gap in Eu3+-doped compounds


Autoria(s): Li L; Zhou SH; Zhang SY
Data(s)

2007

Resumo

The dielectric definition of average energy gap E-g of the chemical bond has been calculated quantitatively in Eu3+-doped 30 lanthanide compounds based on the dielectric theory of chemical bond for complex structure crystals. The relationship between the experimental charge transfer (CT) energy of Eu3+ and the corresponding average energy gap E-g has been studied. The results show that the CT energy increases linearly with increasing of the average energy gap E-g. The linear model is obtained. It allows us to predict the CT position of Eu3+-doped lanthanide compounds with knowledge of the crystal structure and index of refraction. Applied to the Ca4GdO(BO3)(3):Eu and Li2Lu5O4(BO3)(3):Eu crystals, the predicted results of CT energies are in good agreement with the experimental values, and it can be concluded that the lowest CT energy in Li2Lu5O4(BO3)(3):Eu originates from the site of Lu1.

Identificador

http://ir.ciac.jl.cn/handle/322003/13901

http://www.irgrid.ac.cn/handle/1471x/149668

Idioma(s)

英语

Fonte

Li L;Zhou SH;Zhang SY.Investigation on relationship between charge transfer position and dielectric definition of average energy gap in Eu3+-doped compounds,JOURNAL OF PHYSICAL CHEMISTRY C ,2007 ,111(7):3205-3210

Palavras-Chave #RARE-EARTH IONS #LUMINESCENT PROPERTIES #TRANSFER TRANSITIONS #SYSTEMATIC BEHAVIOR #ELECTRON-TRANSFER #ABSORPTION BANDS #BOND COVALENCY #TRANSFER STATE #LANTHANIDE #CRYSTAL
Tipo

期刊论文