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Primary

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Covalent Bonds Locally well-defined orbitals Elements with electrons up ... Arial Symbol Default Design Types of Chemical Bonds Covalent Bonds Hybridized ... – PowerPoint PPT presentation

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Title: Primary


1
Types of Chemical Bonds
  • Primary
  • Ionic
  • Electronegative/Electropositive
  • Metallic
  • Electropositive give up electrons
  • Colavent
  • Electronegative want electrons
  • Shared electrons along bond direction
  • Secondary
  • Fluctuating/instantaneous dipoles
  • Permanent dipoles (H-bonds)

Isotropic, filled outer shells
2
Covalent Bonds
  • Locally well-defined orbitals
  • Elements with electrons up to 2p or 3p states
  • Filled outer shell ? octet rule (s p ? 8
    states)
  • Rule 8-N electrons n bonds
  • Example carbon (C)
  • 6 electrons 1s22s22p2
  • 2s22p2 ? N 4 ? n 4

how can carbon atoms fill px, py and pz orbitals
if the other element is also electronegative?
s orbital
p orbitals
?
?
?
?
  • solution sp2 or sp3 hybrization

http//www.emc.maricopa.edu/faculty/farabee/BIOBK/
orbitals.gif
3
Hybridized Bonds
  • Elemental carbon (no other elements)

sp3 hybridization
?
?
?
?
also methane CH4
one s three p orbitals ? 4 (x 2) electron
states (resulting orbital is a combination)
4
Properties from Bond-Energy Curve
Mechanical Properties
E
R (interatomic distance)
R0
E0
F dE/dR
The bond force curve
Elastic constants relate stress to strain
Stress related to force Strain related to
displacement
at R0 no net force (equilibrium bond distance)
attractive
F k Dx
F
k
stressarea
strainlength
R0
R (interatomic distance)
stress ? k strain
repulsive
Elastic constants given by slope of B.F. curve at
R0 given by curvature
of B.E. curve at R0
5
Chemical Bonding
  • Covalent between electronegative elements
  • Metallic between electropositive elements
  • Ionic between different elements with differing
    electronegativities
  • Clear distinction between metallic non-metallic
  • Ionic covalent somewhat qualitative boundary
  • ionic chararacter 1 exp( -¼ (xA xB)2)
  • xA, xB electronegativities

6
Metallic Structures
  • Goal Achieve as many bonds as possible
  • Treat as the close-packing of hard spheres

1-D
2-D
7
  • Definitions
  • Lattice point
  • Unit cell
  • Lattice parameters
  • Atoms per unit cell
  • Fractional coordinates
  • Symmetry operations
  • Coordination number

8
mirror
glide
a2
a1
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