Title of article :
New defect-crystal-chemical approach to non-Vegardianity and complex defect structure of fluorite-based MO2–LnO1.5 solid solutions (M4+ = Ce, Th; Ln3+ = lanthanide): Part II: Detailed local-structure and ionic-conductivity analysis
Author/Authors :
Nakamura، نويسنده , , Akio، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2010
Pages :
23
From page :
1631
To page :
1653
Abstract :
In Part I a new lattice-parameter (a0(ss)) model for the entitled so-called defect-fluorite solid solutions (ss) was proposed; this clarified their markedly non-Vegardian a0(ss) behavior as a macroscopic manifestation of their microscopic defect (VO)-related local structure, in particular the non-random oxygen coordination around the cations of CN(Ln3+) ≠ CN(M4+). In this Part II the proposed model was further applied to analyse their controversial detailed local-structure and ionic-conductivity behavior. The combination of the CN(Ln3+, M4+) data with ‘restricted (non-)randomness’ of defect-fluorite oxides can provide almost a full set of their mutually non-random cation (M4+, Ln3+) ↔ anion (O2−, VO) coordination-structure data, such as oxygen 8, 7 and 6-fold coordinated cation (M4+, Ln3+) concentrations and dopant (Ln3+) n(= 0–4)-fold coordinated anion (VO, O2−) concentrations. This can also provide a new consistent description of ionic-conductivity maximum behavior in low-y range as a multiple VO ↔ O2− site-exchange process in and between differently dopant (Ln3+)-associated anion sites. Thus, together with the a0(ss)-analysis results obtained in Part I, the present model is proposed as a new quantitative a0(ss) model for these defect-fluorite oxides and as a new direct link to their complex defect (local) structure. Possible further elaborations and application extensions of the present model in the future are also discussed both from the basic theoretical and material sides.
Keywords :
Restricted non-randomness , Defect crystal chemistry , Defect-fluorite oxides , Ionic conductivity maximum behavior , M4+) , ThO2–LnO1.5 , CeO2–LnO1.5 , Mutually non-random cation–anion local coordination structure , Non-random CN (Ln3+
Journal title :
Solid State Ionics
Serial Year :
2010
Journal title :
Solid State Ionics
Record number :
1722089
Link To Document :
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