Structural role of fluoride in aluminophosphate sol-gel glasses: High-resolution double-resonance NMR studies
Data(s) |
2007
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Resumo |
The local structure of Na-Al-P-O-F glasses, prepared by a novel sol-gel route, was extensively investigated by advanced solid-state NMR techniques. Al-21{F-19} rotational echo double resonance (REDOR) results indicate that the F incorporated into aluminophosphate glass is preferentially bonded to octahedral Al units and results in a significant increase in the concentration of six-coordinated aluminum. The extent of Al-F and Al-O-P connectivities are quantified consistently by analyzing Al-27{P-31} and Al-21{F-19} REDOR NMR data. Two distinct types of fluorine species were identified and characterized by various F-19{Al-27}, F-19{Na-23}, and F-19{P-31} double resonance experiments, which were able to support peak assignments to bridging (Al-F-Al, -140 ppm) and terminal (Al-F, -170 ppm) units. On the basis of the detailed quantitative dipole-dipole coupling information obtained, a comprehensive structural model for these glasses is presented, detailing the structural speciation as a function of composition. |
Identificador | |
Idioma(s) |
英语 |
Fonte |
Zhang Long;de Araujo Carla C.;Eckert Hellmut.,J. Phys. Chem. B,2007,111(35):10402-10412 |
Palavras-Chave | #光学材料;光学玻璃 #FLUOROPHOSPHATE GLASSES #STATE NMR #PHOSPHATE-GLASSES #QUADRUPOLAR NUCLEI #MULTISPIN SYSTEMS #UP-CONVERSION #SPECTROSCOPY #REDOR #DISTANCES #SPECTRA |
Tipo |
期刊论文 |