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Aliovalent substitution charge compensated

In the fluorides, chlorides and oxides of the Group-A main-group metals and the transition metals zirconium and hafnium, aliovalent cation substitutions are generally charge-compensated by the introduction of native defects (e.g. an oxygen vacancy in Zr, ,Ca 02 x) because the intrinsic is large however, in some oxides neutral oxygen or water may... [Pg.47]

Doping by aliovalent cations is indispensable for the appearance of protonic conduction in these oxides. It seems that electron holes and oxide ion vacancies formed by doping might play an important role in the formation of protons. For example, substitution of Yb for Ce in SrCeOg may provide oxygen vacancies Vq as a means of charge compensation ... [Pg.129]

Extrinsic Defects Extrinsic defects occur when an impurity atom or ion is incorporated into the lattice either by substitution onto the normal lattice site or by insertion into interstitial positions. Where the impurity is aliovalent with the host sublattice, a compensating charge must be found within the lattice to pre-serve elec-troneutality. For example, inclusion of Ca in the NaCl crystal lattice results in the creation of an equal number of cation vacancies. These defects therefore alter the composition of the solid. In many systems the concentration of the dopant ion can vary enormously and can be used to tailor specific properties. These systems are termed solid solutions and are discussed in more detail in Section 25.1.2. [Pg.420]


See other pages where Aliovalent substitution charge compensated is mentioned: [Pg.428]    [Pg.490]    [Pg.182]    [Pg.76]    [Pg.330]    [Pg.147]    [Pg.184]    [Pg.56]    [Pg.103]    [Pg.228]    [Pg.228]    [Pg.7]    [Pg.384]    [Pg.52]    [Pg.259]    [Pg.251]    [Pg.745]   
See also in sourсe #XX -- [ Pg.47 ]




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