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Today’s objectives:  Directions, Planes, and Defects ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Crystallographic Directions and Planes ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
[Directions] ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],x y z
more [Directions] ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],x y z
more <Directions> ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],A <family of directions> includes all possible directions with the same basic coordinates. x y z
(Planes) ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],x y z
more {Planes} ,[object Object],[object Object],[object Object],[object Object],x y z
For a simple cubic lattice and (0,0,0) basis: ,[object Object],[object Object],[object Object],[object Object],x y z ± ± - + +
For CsCl (simple cubic lattice,  basis of Cl-(0,0,0) and Cs-(½½,½)) ,[object Object],[object Object],[object Object],[object Object],x y z ± ± - + ++ ++ ± ± ±
Others ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Interstitial sites for cations
Vacancies and Interstitials ,[object Object],[object Object],Stoichiometry:  Maintaining a simple ratio of cations and anions (independent of charge neutrality which always must be maintained)
Defect Concentrations •  Frenkel Defect -- a cation is out of place. •  Shottky Defect -- a paired set of cation and anion vacancies. •  Equilibrium concentration of defects  Adapted from Fig. 13.20,  Callister 5e.   (Fig. 13.20 is from W.G. Moffatt, G.W. Pearsall, and J. Wulff,  The Structure and Properties of Materials , Vol. 1,  Structure , John Wiley and Sons, Inc., p. 78.)  See Fig. 12.21,  Callister 6e . As temperature increases, so does the vacancy and interstitial concentration. Thus, the properties can change (this is often a major limitation but sometimes a benefit). Why not an anionic Frenkel?.
Correlated Defects Defects usually add/subtract charge; thus, Coulombic forces attract them, and conveniently  stoichiometry is maintained. Why will defects sometimes hang out together (‘correlation’)?
Multivalent self-Defects Multivalent defects occur often for certain metal ions, primarily transition metals. This will lead to  non -stoichiometry . Fe x O
Impurity defects Cationic Ca instead of Na in NaCl B instead of Si in SiO 2 Anionic O instead of Cl in NaCl O instead of N in GaN Charge neutrality must be maintained. Thus, if a substitutional impurity has a different charge than the substituted ion, another defect (or defects) must be present to balance it out.  Non-stoichiometry often results.
IMPURITIES •  Impurities must satisfy  charge balance •  Ex:  NaCl Instead of the anion vacancy, we could have a cation interstitial. Why not the same for the cation impurity? •  Substitutional cation impurity •  Substitutional anion impurity
Charge Balancing Cations Anions Na + Cl - Substitutional- ”aliovalent” Vacancy Initial Compound: NaCl K F V Na V Cl Extra Charge? Extra Charge? none none 1 too few e - 1 extra e - Interstitial  (self or impurity) Na i Cl i 1 extra e - 1 too few e -   BUT unlikely Substitutional-  2 higher charges Al P 2 too many 2 too few Substitutional-  1 higher charge  (or multivalent) Ca O 1 extra e - 1 too few e -
Charge Balancing Cations Anions Zn 2+ S 2- Substitutional-aliovalent Vacancy Initial Compound: ZnS Ca O V Zn V S Extra Charge? Extra Charge? none none 2 too few e - 2 extra e - Interstitial  (self or impurity) Zn i S i 2 extra e - NEVER Substitutional-  1 lower charge K Br 1 too few e- 1 too many e- Mix and match defects to maintain charge neutrality, but recognize that multiple defects (especially different kinds) generally diminish properties. Substitutional-  1 higher charge  (or multivalent) Al As 1 extra e - 1 too few e -
Dopants vs. Impurities ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
SUMMARY ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Mechanical Properties Chapter sections: 8.4,12.8-12.11 Reading for next class

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Lecture 03

  • 1.
  • 2.
  • 3.
  • 4.
  • 5.
  • 6.
  • 7.
  • 8.
  • 9.
  • 10.
  • 12.
  • 13. Defect Concentrations • Frenkel Defect -- a cation is out of place. • Shottky Defect -- a paired set of cation and anion vacancies. • Equilibrium concentration of defects Adapted from Fig. 13.20, Callister 5e. (Fig. 13.20 is from W.G. Moffatt, G.W. Pearsall, and J. Wulff, The Structure and Properties of Materials , Vol. 1, Structure , John Wiley and Sons, Inc., p. 78.) See Fig. 12.21, Callister 6e . As temperature increases, so does the vacancy and interstitial concentration. Thus, the properties can change (this is often a major limitation but sometimes a benefit). Why not an anionic Frenkel?.
  • 14. Correlated Defects Defects usually add/subtract charge; thus, Coulombic forces attract them, and conveniently stoichiometry is maintained. Why will defects sometimes hang out together (‘correlation’)?
  • 15. Multivalent self-Defects Multivalent defects occur often for certain metal ions, primarily transition metals. This will lead to non -stoichiometry . Fe x O
  • 16. Impurity defects Cationic Ca instead of Na in NaCl B instead of Si in SiO 2 Anionic O instead of Cl in NaCl O instead of N in GaN Charge neutrality must be maintained. Thus, if a substitutional impurity has a different charge than the substituted ion, another defect (or defects) must be present to balance it out. Non-stoichiometry often results.
  • 17. IMPURITIES • Impurities must satisfy charge balance • Ex: NaCl Instead of the anion vacancy, we could have a cation interstitial. Why not the same for the cation impurity? • Substitutional cation impurity • Substitutional anion impurity
  • 18. Charge Balancing Cations Anions Na + Cl - Substitutional- ”aliovalent” Vacancy Initial Compound: NaCl K F V Na V Cl Extra Charge? Extra Charge? none none 1 too few e - 1 extra e - Interstitial (self or impurity) Na i Cl i 1 extra e - 1 too few e - BUT unlikely Substitutional- 2 higher charges Al P 2 too many 2 too few Substitutional- 1 higher charge (or multivalent) Ca O 1 extra e - 1 too few e -
  • 19. Charge Balancing Cations Anions Zn 2+ S 2- Substitutional-aliovalent Vacancy Initial Compound: ZnS Ca O V Zn V S Extra Charge? Extra Charge? none none 2 too few e - 2 extra e - Interstitial (self or impurity) Zn i S i 2 extra e - NEVER Substitutional- 1 lower charge K Br 1 too few e- 1 too many e- Mix and match defects to maintain charge neutrality, but recognize that multiple defects (especially different kinds) generally diminish properties. Substitutional- 1 higher charge (or multivalent) Al As 1 extra e - 1 too few e -
  • 20.
  • 21.