are essentially improved versions of MNDO. The general impression is that the
semiempirical and ab initio transition states are qualitatively similar in most cases,
with MNDOC geometries being sometimes a bit better. The semiempirical and ab
initio geometries were in most cases fairly similar, so that as far as geometry goes
one would draw the same qualitative conclusions.
Semiempirical and ab initio geometries are compared further in Fig.6.3, which
presents results for four reactions, the same as for the ab initio calculations sum-
marized in Fig. 5.21. As expected from the results of Fig.6.2, the semiempirical
CC C..
C2v
1.502
1.4821.4961.486
1.473
1.49660.7
61.0
59.1 58.6
59.560.4C H O
11.335
1.3561.293
1.296
1.286
1.295
1.4241.406
1.4061.5721.571
1.521
113.8112.0
114.0121.2120.3
118.4
308
261
233
282Cs348
243
173
161CN C1.803
1.831
1.8971.700
1.7781.7531.226
1.2171.2061.121
1.0951.0881.119
1.0951.08565.0
68.065.974.172.7
78.5291
215
140
1291.217
1.212
1.1961.3991.384
1.4551.298
1.388
1.177
59.064.3
65.967.5
63.9
72.8HN CCsOHNCH
ON C HCNCN C CC C CCs
CsCiv CivC3vC3vD2d1.1251.097
1.091110.1
109.7109.4
1.3951.433
1.4261.181
1.1811.1541.1631.159
1.1801.4391.441
1.4621.120
1.0981.093–130
–131
–120
–980
0
0
01.298
1.297
1.313115.4
115.4117. 2–313
–282- 287
–293
101
106
26
13-20
0
0
0
00.968
0.9510.9741.372
1.3571.369
1.336
1.3351.337115.7
117.7114.4
109.1108.1
109.1AM1
PM3
MP20 AM1
0 PM3
0 MP2
0 exp1.490
1.4991.5031.231
1.210
1.2231.117
1.0981.091
108.5
107.5
107.2121.2
120.0
120.3- 34
- 53
–72 - 42
0
0
0
0–75
–99- 87
–58
0.967
0.976
1.0031.178
1.1781.187 1.1601.156
1.1771.0691.071
1.069Cs1.413
1.408
1.3891.920
1.9202.01485.6
86.0
92.2
47.2
47.0
47.247.0 44.2
43.61.413
1.4081.406 CC CFig. 6.3 Geometries (A ̊, degrees) and relative energies (kJ mol"^1 ) for four reactions, the same as
for the ab initio calculations of Fig.5.21; most Hs are omitted, for clarity. In Fig. 5.21, raw
energies in hartrees and ZPEs were given. The experimental relative energies [ 96 ] are somewhat
approximate for the ethenol (vinyl alcohol) and cyclopropylidene reactions
418 6 Semiempirical Calculations