首页> 美国政府科技报告 >Ordering and Grain Boundary Effects on Ionic Conductivity in ZrO sub 2 -Gd sub 2 O sub 3 and ZrO sub 2 -Nd sub 2 O sub 3 Ceramics
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Ordering and Grain Boundary Effects on Ionic Conductivity in ZrO sub 2 -Gd sub 2 O sub 3 and ZrO sub 2 -Nd sub 2 O sub 3 Ceramics

机译:ZrO sub 2 -Gd sub 2 O sub 3和ZrO sub 2 -Nd sub 2 O sub 3陶瓷中离子电导率的排序和晶界效应

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Single crystal and powder X-ray refinements of pyrochlores are described with the main aim of evaluating the degree of perfectness of cation ordering in this type of system. Neutron refinement results from solid solutions indicate substantial disorder in the anion-sublattice with a more or less dilute concentration of mobile oxygen ions. Conductivity measurements of fluorite and pyrochlore solid solutions indicate that at the stoichiometric pyrochlore composition, sigma sub 0 and delta H are minimal. Complex admittance measurements show that the grain boundary regions have a much lower specific conductivity than the grain bulk, and that very pure materials can have a larger grain boundary resistivity than less pure materials. The variation of the electrical conductivity is explained as a function of composition and ordering in a model which has three basic elements - the strain energy contribution to the activation enthalpy for ionic motion in fluorite and pyrochlore solid solutions, the magnitude of the pre-exponential factor in terms of the degree of disorder in the oxygen sublattice and the occurrence of a hybrid phase for pyrochlore compositions which deviate strongly from stoichiometry. (Atomindex citation 12:634522)

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