671 - 677 |
Investigation of bioglass-electrode interfaces after thermal poling Mariappan CR, Roling B |
678 - 682 |
High density and low temperature sintered proton conductor BaCe0.5Zr0.35Sc0.1Zn0.05O3-delta Azad AK, Irvine JTS |
683 - 688 |
Phosphoric acid-doped poly(1-vinyl-1,2,4-triazole) as water-free proton conducting polymer electrolytes Celik SU, Aslan A, Bozkurt A |
689 - 696 |
Solid polymer electrolytes based on polyethylene oxide and lithium trifluoro-methane sulfonate (PEO-LiCF3SO3): Ionic conductivity and dielectric relaxation Karan NK, Pradhan DK, Thomas R, Natesan B, Katiyar RS |
697 - 705 |
The structural and conductivity evolution of fluorite-type Bi2O3-Er2O3-PbO solid electrolytes during long-term annealing Webster NAS, Ling CD, Raston CL, Lincoln FJ |
706 - 711 |
Mixed cation effect on silver-lithium solid electrolyte (AgI)(0.5)(LiPO3)(0.5) Kartini E, Sakuma T, Basar K, Ihsan M |
712 - 717 |
Surface hydration-mediated conduction of NiO nanocrystals Chen LJ, Li LP, Li GS |
718 - 724 |
Investigation of the electronic structure of the cubic spinel Cu1.2Mn1.8O4 using electron energy loss spectroscopy Maunders C, Martin BE, Wei P, Petric A, Botton GA |
725 - 731 |
Structural and electrochemical properties of the perovskite oxide Pr0.7Sr0.3Cr0.9Ni0.1O3-delta Tao SW, Irvine JTS |
732 - 739 |
Interaction of (La1-xSrx)(1-y)MnO3-Zr1-zYzO2-d cathodes and LaNi0.6Fe0.4O3 current collecting layers for solid oxide fuel cell application Millar L, Taherparvar H, Filkin N, Slater P, Yeomans J |