Hui-xue Li¤, Su-juan Pan, Xiao-feng Wang, Tai Xiao. Theoretical Studies on the Ground State and Excited State of 2,70-(Ethylene)-bis-8-hydroxyquinoline[J]. Chinese Journal of Chemical Physics , 2008, 21(3): 263-269. DOI: 10.1088/1674-0068/21/03/263-269
Citation:
Hui-xue Li¤, Su-juan Pan, Xiao-feng Wang, Tai Xiao. Theoretical Studies on the Ground State and Excited State of 2,70-(Ethylene)-bis-8-hydroxyquinoline[J]. Chinese Journal of Chemical Physics , 2008, 21(3): 263-269. DOI: 10.1088/1674-0068/21/03/263-269
Hui-xue Li¤, Su-juan Pan, Xiao-feng Wang, Tai Xiao. Theoretical Studies on the Ground State and Excited State of 2,70-(Ethylene)-bis-8-hydroxyquinoline[J]. Chinese Journal of Chemical Physics , 2008, 21(3): 263-269. DOI: 10.1088/1674-0068/21/03/263-269
Citation:
Hui-xue Li¤, Su-juan Pan, Xiao-feng Wang, Tai Xiao. Theoretical Studies on the Ground State and Excited State of 2,70-(Ethylene)-bis-8-hydroxyquinoline[J]. Chinese Journal of Chemical Physics , 2008, 21(3): 263-269. DOI: 10.1088/1674-0068/21/03/263-269
Biochemical College of Tianshui Normal University, Tianshui 741000 ChinaCollege of Chemical Engineering, Northwest Normal University, Lanzhou 730070 China
Dielectric relaxation method was employed to study the properties of oxygen ion diffusion and phase transition in the oxide-ion conductors (La1-xLnx)2Mo2O9 (Ln=Nd, Gd, x=0.05-0.25). Two dielectric loss peaks were observed: peak Pd at about 600 K and peak Ph around 720 K. Peak Pd is a relaxational peak and associated with the short-range diffusion of oxygen ions, while peak Ph hardly changes its position and dramatically decreases in height with increasing frequency, exhibiting non-relaxational nature. With increasing Ln3+ concentration, the heights of peak Ph and Pd increase at first and then decrease after passing a maximum at 15% doping. It is suggested that peak Ph is related to the phase transition of a static disordered state to a dynamic disordered state in oxygen ions/vacancies distribution. It is found that the 15%Gd or 15%Nd doped La2Mo2O9 samples exhibit the highest conductivity in accordance with the highest height of peak Pd at this doping content.