The final saga. There is an activation energy for each elementary step. Activation energy...

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ACTIVATION ENERGY AND RATES The final saga

Transcript of The final saga. There is an activation energy for each elementary step. Activation energy...

Page 1: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

ACTIVATION ENERGY AND RATES

The final saga

Page 2: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Mechanisms and rates

There is an activation energy for each elementary step.

Activation energy determines k. k = Ae- (Ea/RT)

k determines rate Slowest step (rate determining)

must have the highest activation energy.

Page 3: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

• This reaction takes place in three steps

Page 4: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Ea

First step is fastLow activation energy

Page 5: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Second step is slowHigh activation energy

Ea

Page 6: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Ea

Third step is fastLow activation energy

Page 7: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Second step is rate determining

Page 8: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Intermediates are present

Page 9: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Activated Complexes or Transition States

Page 10: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Catalysts

Speed up a reaction without being used up in the reaction.

Enzymes are biological catalysts. Homogenous Catalysts are in the

same phase as the reactants. Heterogeneous Catalysts are in a

different phase as the reactants.

Page 11: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

How Catalysts Work

Catalysts allow reactions to proceed by a different mechanism - a new pathway.

New pathway has a lower activation energy.

More molecules will have this activation energy.

Does not change E Show up as a reactant in one step

and a product in a later step

Page 12: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Pt surface

HH

HH

HH

HH

Heterogenous Catalysts

Hydrogen bonds to surface of metal.

Break H-H bonds

Page 13: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Pt surface

HH

HH

Heterogenous Catalysts

C HH C

HH

Page 14: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Pt surface

HH

HH

Heterogenous Catalysts

The double bond breaks and bonds to the catalyst.

C HH C

HH

Page 15: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Pt surface

HH

HH

Heterogenous Catalysts

The hydrogen atoms bond with the carbon

C HH C

HH

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Pt surface

H

Heterogenous Catalysts

C HH C

HH

H HH

Page 17: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Homogenous Catalysts

Chlorofluorocarbons (CFCs) catalyze the decomposition of ozone.

Enzymes regulating the body processes. (Protein catalysts)

Page 18: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Catalysts and rate

Catalysts will speed up a reaction but only to a certain point.

Past a certain point adding more reactants won’t change the rate.

Zero Order

Page 19: The final saga.  There is an activation energy for each elementary step.  Activation energy determines k.  k = Ae - (E a /RT)  k determines rate

Catalysts and rate.

Rate increases until the active sites of catalyst are filled.

Then rate is independent of concentration

Concentration of reactants

Rate