HW_9_Ken
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•Find the transition state and calculate the barrier height (ΔV≠) for the following reaction.
reaction:HNC → HCN
methods : MP2/aug-cc-pVTZ、MP2/6-31+G**
Table1. Barrier height (ΔV≠) of HNC → HCN by different basis set(MP2/aug-cc-pVTZ、MP2/6-31+G**).
| (unit: Hartress) | (unit: kcal/mol) | ||
| HNC | Transition state | ΔV≠ | |
| MP2/6-31+G** | -93.1430 | -93.0870 | 35.2 |
| MP2/aug-cc-pVTZ | -93.2313 | -93.1764 | 34.4 |
Using higher-level theory (aug-cc-pVTZ) for single-point calculations to correct ΔV≠ can significantly reduce the error in rate constants.
•Calculate the k(rate constant) in different temperatures (at least 3 different temperatures) for the following reaction and plot of ln(k) versus 1000/T then compare with the experimental values.
reaction:CH4 +OH․→ H2O + CH3․
methods : MP2/aug-cc-pVTZ、MP2/6-31+G**
Figure 1. Arrhenius plot of MP2/aug-cc-pVTZ, MP2/6-31+G**, experimental
The energy at the transition state (TS) is lower than that of the starting material because, during bond breaking, an imaginary frequency is generated.
Table 2. lnk of MP2/aug-cc-pVTZ, MP2/6-31+G**, experimental at different temperature(100 K~600 k).
|
lnk |
|||
|
T |
MP2/aug-cc-pVTZ |
MP2/6-31+G** |
實驗值a |
|
100 |
4.6 |
1.5 |
-43.9 |
|
200 |
5.3 |
1.7 |
-35.4 |
|
300 |
5.7 |
1.7 |
-32.6 |
|
400 |
6.0 |
1.8 |
-31.0 |
|
500 |
6.2 |
1.8 |
-29.9 |
|
600 |
6.4 |
1.9 |
-29.0 |
|
MAE |
3.6 |
11.5 |
|
a: Symposium (International) on Combustion, Volume 20, Issue 1, 1985, Pages 703-713
reaction:CD4 +OH․→ H2O(1 H will replace by D) + CD3․
methods : MP2/6-31+G**
Figure 2. Arrhenius plot of MP2/6-31+G**, experimental
