Download - Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Transcript
Page 1: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Localized Electron Model

Page 2: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Models for Chemical Bonding

Molecular orbital model

(Valence bond model)

Localized electron model

Page 3: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Useful for explaining the structure of molecules especially nonmetals bonded to nonmetals

Localized Electron Model

Page 4: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Electron pair can be shared when half-filled orbital of one atom overlaps with half-filled orbital of another.

δ Bond: orbitals overlap along the internuclear axis

Bond: side by side overlap of orbitals parallel to the internuclear axis

π

Localized electron model

Page 5: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Distance of separation

0

Pote

ntia

l ene

rgy

Page 6: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Overlap and Bonding

• However, if atoms get too close, the internuclear repulsion greatly raises the energy.

• Increased overlap brings the electrons and nuclei closer together while simultaneously decreasing electron– electron repulsion.

Page 7: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

MolecularGeometries

and Bonding© 2012 Pearson Education, Inc.

Overlap and Bonding

s,s δ bond

s,p δ bond

p,p δ bond

Page 8: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Structure of Methane (CH4 )

structure of methane seems inconsistent with electron configuration of carbon

Page 9: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

carbon

2p

only two unpaired electrons

Carbon Should form δ −bonds with only two Hydrogen atoms ?2s

Page 10: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Hybridization of AtomicOrbitals

Page 11: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

atomic orbitals obtained when two or nonequivalent orbitals of the same atom combine in preparation for covalent bond formation

Hybrid orbitals

Page 12: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

sp3 Hybridization

Page 13: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Promote an electron from the 2s to the 2p orbital

2s

2p 2p

2s

sp3 Hybridization

Page 14: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Mix together (hybridize) the 2s orbital and the three 2p orbitals

2p

2s

sp3 Hybridization

Page 15: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Mix together (hybridize) the 2s orbital and the three 2p orbitals

2 sp3

2p

2s

sp3 Hybridization

Page 16: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

2 sp3

Mix together (hybridize) the 2s orbital and the three 2p orbitals

sp3 Hybridization

Page 17: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

MolecularGeometries

and Bonding© 2012 Pearson Education, Inc.

Hybrid Orbitals

With carbon, we get four degenerate sp3 orbitals.

Page 18: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Bond in CH4δ

s sp3

CH

H CC Hδ

Page 19: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

The model is consistant with structure of methane

Allows for the formation of more bonds (4 rather than 2)

Bonds involving sp3 orbitals are stronger than s-s overlap or p-p overlap

Justification for OrbitalHybridization

Page 20: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Four electron pairs

= tetrahedral arangement of those electron pairs

Remember

= sp3 hybridization

Page 21: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

tetrahedral arrangement of electron pairs Four electron pairs

C

N

:S:

:

Page 22: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

N

:2 sp3

NH3

Page 23: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

sp Hybridization

Page 24: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Promote an electron from the 2s to the 2p orbital

2s

2p 2p

2s

Beryllium chloride ( BeCl2 )

Page 25: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

2p

2s

Beryllium chloride ( BeCl2 )

Mix together (hybridize) the 2s orbital and one 2p orbitals

Page 26: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

2p

2sp

Beryllium chloride ( BeCl2 )

Mix together (hybridize) the 2s orbital and one 2p orbitals

Page 27: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

The Be Cl δ Bond in BeCl

p spCl Be

Cl Be

Be Cl

Page 28: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Cl Be

The Be Cl δ Bond in BeCl

p spCl Be

Cl

Page 29: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

MolecularGeometries

and Bonding© 2012 Pearson Education, Inc.

Hybrid Orbitals• These two degenerate orbitals would align

themselves 180° from each other.• This is consistent with the observed geometry of

beryllium compounds: linear.

Page 30: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

sp2 Hybridization

Page 31: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Boron trifloride

Promote an electron from the 2s to the 2p orbital

2p

2s2s

2p

Page 32: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Boron trifloride Mix together (hybridize) the 2s orbital and two 2p orbitals

2p

2s

Page 33: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Boron trifloride

2 sp2

2p

Mix together (hybridize) the 2s orbital and two 2p orbitals

Page 34: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

MolecularGeometries

and Bonding© 2012 Pearson Education, Inc.

Hybrid OrbitalsUsing a similar model for boron leads to three

degenerate sp2 orbitals.

Page 35: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

B

F

Boron trifloride

Page 36: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

B

F

F

F

Boron trifloride

Page 37: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

hybrid orbitals are used only for atoms in a molecule,

Hybridizing Atomic Orbitals

hybrid orbitals are different in shape from the atomic orbitals from which we derive themnumber of hybrid orbitals equals number of atomic orbitals from which they were generated

hybridization permits more bonds and stronger bondscovalent bond results from overlap of half-filled orbitals

not for isolated atoms

Page 38: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

draw the Lewis structure of the molecule

Procedure For Hybridizing Atomic Orbitals

predict the overall arrangement of the electron pairs using the VSEPR model

deduce the hybridization of the central atom

Page 39: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

PF5SF6

Page 40: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Hybridization of s, p, and d Orbitals

Beginning with the third period of the periodic table 1 3s orbital + 3 3p orbital + 1 3d orbital

gives sp3dPermits five electron pairs ( trigonal bipyramidal )

1 3s orbital + 3 3p orbital + 2 3d orbital

Permits six electron pairs ( octahedral )

gives sp3d2

Page 41: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

π -Bonds

Page 42: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Review :Valence bond model

Electron pair can be shared when the half-filled orbital of one atom overlaps with half-filled orbital of another.

δ Bond: orbitals overlap along the internuclear axis

Bond: side by side overlap of orbitalsπ

Page 43: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

MolecularGeometries

and Bonding© 2012 Pearson Education, Inc.

Pi (π) Bonds

• Pi bonds are characterized by– Side-to-side overlap.– Electron density above and below the internuclear

axis.

Page 44: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Structure of EthyleneC2H4

CH2 CH2

planar

Bond angle 120 °

Requires hybridization different from sp3

Page 45: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Promote an electron from the 2s to the 2p orbital

2s

2p 2p

2s

Orbital Hybridization

Page 46: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Orbital Hybridization

2p

2s

Mix together (hybridize) the 2s orbital and the two 2p orbitals

Page 47: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

2 sp2

2p

Orbital HybridizationMix together (hybridize) the 2s orbital and the two 2p orbitals

Page 48: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

Lewis model : Ethylene

HC

H

H

HC

The carbon-carbon double bond of ethylene is a combination of an

δ Bond

δ Bond

Bondπ

Bondπ and

Page 49: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

−Bonding in Ethyleneπ

2 sp2

Page 50: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

sp2

−Bonding in Ethyleneπ

2p

Page 51: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

−Bonding in Ethyleneπ

Page 52: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

−Bonding in Ethyleneπ

Page 53: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

MolecularGeometries

and Bonding© 2012 Pearson Education, Inc.

Multiple Bonds

• In a molecule like formaldehyde (shown at left), an sp2 orbital on carbon overlaps in σ fashion with the corresponding orbital on the oxygen.

• The unhybridized p orbitals overlap in π fashion.

Page 54: Localized Electron Model - Mister Chemistry · Models for Chemical Bonding Molecular orbital model (Valence bond model) ... Localized electron model. Distance of separation gy 0.

MolecularGeometries

and Bonding© 2012 Pearson Education, Inc.

Multiple Bonds

In triple bonds, as in acetylene, two sp orbitals form a σ bond between the carbons, and two pairs of p orbitals overlap in π fashion to form the two π bonds.