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Comparison of levels of theory for C-H


Click on an entry for a histogram of the values.
The subscript refers to how many bonds of that type have been calculated.
average calculated bond lengths (Å)
Methods with predefined basis sets
semi-empirical AM1 1.1472
2387
PM3 1.1058
2113
PM6 1.1148
4807
composite G2 1.0922
2449
G3 1.0993
2451
G3B3 1.1021
4791
G3MP2 1.0847
302
G4 1.0980
4713
CBS-Q 1.1029
2429
molecular mechanics DREIDING 1.0925
27

average calculated bond lengths (Å)
Methods with standard basis sets
STO-3G 3-21G 3-21G* 6-31G 6-31G* 6-31G** 6-31+G** 6-311G* 6-311G** 6-31G(2df,p) 6-311+G(3df,2p) 6-311+G(3df,2pd) TZVP cc-pVDZ cc-pVTZ cc-pVQZ aug-cc-pVDZ aug-cc-pVTZ aug-cc-pVQZ cc-pV(D+d)Z cc-pV(T+d)Z aug-cc-pV(T+d)Z cc-pCVDZ cc-pCVTZ cc-pCVQZ aug-cc-pCVTZ Sadlej_pVTZ daug-cc-pVDZ daug-cc-pVTZ daug-cc-pVQZ
hartree fock HF 1.0991
4630
1.0857
4859
1.0862
4750
1.0854
4739
1.0960
5146
1.0878
4743
1.0906
2816
1.0871
4754
1.0879
4690
1.0941
4696
1.0879
3149
1.0811
57
1.1004
5052
1.0946
4743
1.0862
4556
1.0981
1031
1.0941
4407
1.0862
4254
1.0999
923
1.0859
13
1.0788
129
1.0766
15
1.0858
36
1.0792
74
1.0565
1
1.0780
9
1.0894
147
1.1121
427
1.0955
4222
1.0793
3
ROHF 1.1131
97
1.0869
461
1.0873
447
1.0873
420
1.0889
464
1.0899
454
1.0877
461
1.0886
461
1.0901
416
1.1027
111
1.0849
133
  1.0838
275
1.0972
454
1.0871
454
1.0910
279
1.0947
377
1.0873
364
1.0906
256
  1.0730
4
    1.0818
13
      1.0952
76
1.0877
74
 
density functional LSDA 1.1088
2629
1.1085
3085
1.1082
2697
1.1067
2712
1.1071
3219
1.1064
3223
1.1065
3214
1.1052
3227
1.1046
3199
1.1059
3165
1.1237
268
1.0948
30
1.1073
1035
1.1134
3212
1.1029
3196
1.1349
66
1.1105
2917
1.1077
1227
1.1362
60
1.1082
11
1.0968
52
1.0956
15
1.1040
14
1.0990
56
1.0772
1
1.1005
9
1.1089
13
1.1035
27
1.0965
27
 
BLYP 1.1239
4599
1.1065
4763
1.1079
3743
1.1067
4733
1.1105
5289
1.1060
4752
1.1060
4717
1.1054
3741
1.1038
4642
1.1118
4583
1.1195
745
1.0922
30
1.1079
1918
1.1136
4628
1.1033
4679
1.0928
18
1.1108
3154
1.1124
1182
1.0928
18
1.1063
11
1.0926
52
1.0915
15
1.1023
14
1.0950
56
1.0716
1
1.0951
9
1.1057
13
1.1298
425
1.1214
421
 
B1B95 1.1078
4663
1.0995
3926
1.0982
4702
1.0975
4703
1.0982
4629
1.0979
4703
1.0975
4757
1.0964
4682
1.0962
4683
1.0973
4580
1.1106
749
1.0836
30
1.0988
1942
1.1041
4662
1.0935
4653
1.1097
134
1.1015
4161
1.1054
2640
1.1103
111
1.0957
11
1.0845
52
1.0836
15
1.0930
20
1.0864
60
1.0646
1
1.0867
9
1.0962
8
1.1266
329
1.1134
394
 
B3LYP 1.1152
4688
1.0998
4843
1.0991
4781
1.0989
4767
1.1001
4868
1.0986
4767
1.0985
4819
1.0973
4764
1.1001
2740
1.1017
4986
1.1080
2710
1.0898
57
1.1115
5087
1.1059
4720
1.0993
4697
1.1089
958
1.1177
2805
1.0972
4807
1.1094
910
1.0975
13
1.0869
129
1.0853
15
1.0984
34
1.0884
74
1.1002
3
1.0883
9
1.1004
147
1.1226
427
1.1146
423
 
B3LYPultrafine 1.0985
44
1.1070
1428
1.0887
36
1.0897
36
1.1010
4498
1.1082
1400
1.1048
1702
1.1068
1409
1.0877
41
1.1198
666
1.1124
752
1.0890
49
1.1044
1427
1.1126
1774
1.0968
2646
1.0864
18
1.1100
1597
1.0942
4529
1.0865
18
1.0984
9
1.0867
50
1.0852
15
1.0953
14
1.0884
56
1.0655
1
1.0883
9
1.0982
13
1.1230
420
1.1150
417
 
B3PW91 1.1131
2719
1.0999
4781
1.1001
4757
1.0987
4736
1.1033
4655
1.1009
4734
1.0996
3722
1.0978
4685
1.1008
2702
1.1048
4609
1.1135
755
1.0868
30
1.1021
1918
1.1056
4716
1.0972
4673
1.0876
18
1.1040
3176
1.1038
1340
1.0876
18
1.0988
11
1.0877
52
1.0867
15
1.0951
14
1.0897
56
1.0673
1
1.0902
9
1.0984
13
1.1228
427
1.1158
423
 
mPW1PW91 1.1108
2802
1.0980
4736
1.1011
2979
1.0969
4671
1.1008
4678
1.0972
4700
1.0980
4722
1.0971
4741
1.0961
4663
1.1032
4596
1.1121
755
1.0854
30
1.1007
1916
1.1046
4676
1.0993
3150
1.0862
18
1.1019
3716
1.1012
1652
1.0863
18
1.0971
11
1.0864
52
1.0854
15
1.0934
14
1.0884
56
1.0660
1
1.0887
9
1.0967
13
1.1212
427
1.1144
423
 
M06-2X 1.1113
2011
1.1039
2005
1.1062
5369
1.1017
1998
1.1115
4808
1.1028
1991
1.1025
2002
1.1011
2012
1.1009
2008
1.1007
2217
1.1084
3316
1.0844
30
1.1001
1920
1.1091
1996
1.0974
2226
1.0851
18
1.1074
1724
1.0989
1856
1.0850
18
1.0966
11
1.0857
52
1.0848
15
1.0931
14
1.0873
56
1.0655
1
1.0874
9
1.0962
13
1.1208
421
1.1141
415
 
PBEPBE 1.1205
2738
1.1113
4666
1.1121
2779
1.1102
2746
1.1102
4599
1.1090
4636
1.1089
4657
1.1077
4680
1.1053
4663
1.1162
4537
1.3110
3284
1.1504
57
1.1100
1908
1.1159
4545
1.1081
4598
1.1208
131
1.1168
1822
1.1130
2022
1.1227
115
1.1053
13
1.0953
52
1.0943
15
1.1028
14
1.0978
56
1.0750
1
1.0985
9
1.1076
147
1.1308
427
1.1239
423
 
PBEPBEultrafine 1.1042
35
1.1167
1431
1.0977
35
1.0977
35
1.1105
4071
1.1167
1398
1.1160
1410
1.1153
1405
1.0957
40
1.1285
665
1.1215
755
1.0980
49
1.1133
1427
1.1204
1777
1.1098
1780
1.0951
18
1.1181
1589
1.1109
1577
1.0952
18
1.1061
9
1.0958
50
1.0943
15
1.1028
14
1.0978
56
1.0750
1
1.0985
9
1.1071
13
1.1308
425
1.1244
415
 
PBE1PBE 1.1141
1911
1.1077
1768
1.1066
1900
1.1039
1881
1.1172
4780
1.1052
1881
1.1041
1881
1.1035
1890
1.1035
1886
1.1044
1881
1.1136
755
1.0870
30
1.1025
1871
1.1113
1881
1.1017
1881
1.0878
18
1.1098
1654
1.1032
1603
1.0878
18
1.0979
9
1.0883
44
1.0870
15
1.0947
14
1.0900
56
1.0677
1
1.0904
9
1.0982
13
1.1225
427
1.1157
427
 
HSEh1PBE 1.1138
2016
1.1255
4891
1.1057
2019
1.1032
2003
1.1127
4799
1.1040
2003
1.1148
4824
1.1028
2010
1.1027
2008
1.1037
2003
1.1133
753
1.0866
30
1.1020
1920
1.1107
2003
1.1222
4852
1.0874
18
1.1092
1726
1.1027
1623
1.0874
18
1.0984
11
1.0875
52
1.0865
15
1.0946
14
1.0896
56
1.0673
1
1.0899
9
1.0980
13
1.1224
427
1.1156
423
 
TPSSh 1.1259
1021
1.1078
1488
1.1081
1485
1.1065
1477
1.1120
5060
1.1073
1477
1.1112
4971
1.1060
1483
1.1098
1012
1.1033
4841
1.1138
753
  1.1054
1437
1.1128
1556
1.1086
4987
1.1208
555
1.1118
1376
1.1048
1373
1.1208
545
1.0981
9
1.0883
50
1.0869
15
1.0949
14
1.0900
56
1.0672
1
1.0895
9
1.0975
13
1.1233
418
1.1165
418
 
wB97X-D 1.1230
1098
1.1095
1097
1.1022
5276
1.1098
1084
1.1031
5266
1.1108
1079
1.1017
5281
1.1095
1093
1.1012
5268
1.1101
1098
1.1124
750
  1.0991
5278
1.1029
5273
1.0985
5273
1.1194
546
1.1152
1041
1.0982
5202
1.1220
496
1.0973
9
1.0867
48
1.0855
13
1.0947
10
1.0873
43
1.0665
1
1.0886
9
1.0971
13
1.1219
430
1.1143
423
 
B97D3 1.1335
887
1.1080
5149
1.1181
876
1.1179
856
1.1085
5142
1.1176
884
1.1073
5142
1.1168
888
1.1059
5148
1.1170
884
1.1073
5369
  1.1107
5154
1.1250
884
1.1038
5113
1.1274
499
1.1214
868
1.1046
5026
1.1132
436
1.1020
9
1.0916
46
1.0904
13
1.0994
10
1.0921
38
1.0704
1
1.0910
10
1.1025
13
1.1268
422
1.1214
3095
 
STO-3G 3-21G 3-21G* 6-31G 6-31G* 6-31G** 6-31+G** 6-311G* 6-311G** 6-31G(2df,p) 6-311+G(3df,2p) 6-311+G(3df,2pd) TZVP cc-pVDZ cc-pVTZ cc-pVQZ aug-cc-pVDZ aug-cc-pVTZ aug-cc-pVQZ cc-pV(D+d)Z cc-pV(T+d)Z aug-cc-pV(T+d)Z cc-pCVDZ cc-pCVTZ cc-pCVQZ aug-cc-pCVTZ Sadlej_pVTZ daug-cc-pVDZ daug-cc-pVTZ daug-cc-pVQZ
Moller Plesset perturbation MP2 1.1159
2698
1.0995
4819
1.0989
4683
1.1016
4660
1.1130
5261
1.0935
4694
1.1011
4757
1.1166
5190
1.0975
4663
1.1069
3659
1.1110
752
1.3148
55
1.1100
5052
1.1067
4701
1.0925
3822
1.1099
746
1.1076
2756
1.1171
2528
1.1114
706
1.0982
13
1.1157
130
1.0845
15
1.0974
46
1.0847
84
1.0642
1
1.0857
9
1.1017
147
1.1249
420
1.1136
416
1.0859
3
MP2=FULL 1.1160
2648
1.1005
3218
1.1015
2967
1.1037
2950
1.1085
4787
1.0945
3632
1.0935
3688
1.0967
4622
1.1003
2645
1.0987
2760
1.1089
766
1.0827
30
1.0986
1929
1.1076
3168
1.0931
3221
1.1074
744
1.1101
1869
1.0992
1944
1.1086
713
1.0972
13
1.1109
133
1.0811
15
1.0966
46
1.0832
84
1.0629
1
1.0845
9
1.1008
147
1.1239
418
1.0915
410
 
ROMP2 1.1183
270
1.1029
243
1.1021
262
1.1038
266
1.1016
273
1.0976
266
1.0958
271
1.1009
273
1.1016
273
1.1002
275
1.0899
94
  1.0894
212
1.1127
266
1.0970
251
1.1806
22
1.1082
258
1.0837
24
1.1675
25
  1.0863
2
1.0804
2
  1.0884
11
      1.1016
62
1.0903
60
 
MP3 1.1039
35
1.0893
35
1.0893
35
1.0930
35
1.0981
4421
1.0829
35
1.1055
4882
1.0880
44
1.0875
40
1.0847
35
1.1188
554
1.0835
30
1.1037
1233
1.1179
1233
1.1034
1164
1.0832
18
1.0962
35
1.0833
35
1.0822
8
1.0996
11
1.0843
48
1.0834
15
1.0961
14
1.0856
54
1.0628
1
1.0824
10
1.1002
13
1.1403
267
1.0969
170
 
MP3=FULL   1.1077
811
1.1086
786
1.1113
782
1.1107
4790
1.1008
782
1.1045
4524
1.1059
788
1.1056
804
1.1018
790
1.1069
461
  1.0976
1143
1.1115
1120
1.0927
1054
  1.1133
775
1.1057
517
  1.0984
9
1.0803
46
1.0798
15
1.0953
14
1.0835
49
1.0616
1
1.0840
9
1.0993
13
1.1132
202
1.0956
144
 
MP4 1.1068
67
1.1063
1904
1.0960
73
1.0970
117
1.1242
2052
1.0860
38
1.0866
38
1.0926
89
1.1030
1539
1.0864
50
1.0948
417
1.0868
30
1.1008
1157
1.1137
1189
1.1010
1036
1.0865
18
1.1131
1049
1.1052
683
1.0868
18
1.1028
11
1.0872
44
1.0872
15
1.0990
14
1.0896
53
1.0670
1
1.0863
10
1.1035
13
1.1104
204
1.0996
184
 
MP4=FULL 1.1065
35
1.1050
1285
1.0924
35
1.0961
35
1.1041
1310
1.0846
35
1.0852
35
1.0911
39
1.1036
1192
1.0856
35
1.1095
416
1.0859
30
1.0867
31
1.1124
1218
1.0974
882
1.0840
18
1.1119
999
1.1016
615
1.0846
18
1.1013
9
1.0827
36
1.0830
12
1.0982
14
1.0871
49
1.0659
1
1.0852
10
1.1027
13
1.1094
208
1.0987
148
 
B2PLYP 1.1184
1575
1.1038
1574
1.1042
1571
1.1055
1562
1.1155
4422
1.1036
1562
1.1029
1594
1.1037
1567
1.1038
1553
1.1018
1799
1.1108
755
1.0872
10
1.1016
1559
1.1130
1562
1.0966
4467
1.0867
10
1.1106
1449
1.0991
1694
1.0869
14
1.0973
9
1.0852
50
1.0840
15
1.0941
14
1.0864
56
1.0640
1
1.0861
9
1.0969
13
1.1219
427
1.1139
412
 
B2PLYP=FULL 1.1180
1558
1.1032
1602
1.1041
1554
1.1053
1545
1.1046
1590
1.1032
1545
1.1025
1590
1.1034
1554
1.1035
1550
1.1033
1538
1.1106
747
1.1021
2
1.1013
1545
1.1127
1541
1.0996
1521
  1.1103
1435
1.1002
1380
  1.0970
9
1.0841
50
1.0830
15
1.0938
14
1.0859
56
1.0636
1
1.0855
11
1.0967
13
1.1216
427
1.1119
427
 
B2PLYP=FULLultrafine 1.1232
1135
1.1077
1133
1.1081
1130
1.1093
1121
1.1167
5091
1.1074
1117
1.1070
1121
1.1076
1123
1.1076
1126
1.1074
1121
1.1106
750
  1.1054
1121
1.1289
3467
1.1156
3482
  1.1144
1075
1.1163
3427
  1.0970
9
1.0842
48
1.0854
48
1.0945
10
1.0851
43
1.0636
1
1.0855
30
1.0967
13
1.1216
427
1.1122
423
 
Configuration interaction CID 1.1019
45
1.0988
2669
1.0993
2583
1.1005
2572
1.1115
3496
1.0820
93
1.0815
55
1.0954
2545
1.0844
91
1.0802
50
1.1104
615
1.0801
30
1.0815
31
1.1261
593
1.1122
562
1.0806
18
1.0924
35
1.0797
35
1.0802
8
1.0962
9
1.0796
50
1.0800
15
1.0931
14
1.0820
56
1.0605
1
1.0780
10
1.0942
13
1.1282
318
1.0919
186
 
CISD 1.1019
45
1.0991
2662
1.0995
2583
1.1006
2568
1.1186
3479
1.0844
96
1.0826
57
1.0956
2544
1.0846
91
1.0811
49
1.1094
590
1.0804
30
1.0819
31
1.1266
593
1.1116
583
1.0808
18
1.0926
35
1.0800
35
1.0805
8
1.0964
9
1.0798
50
1.0802
15
1.0933
14
1.0823
56
1.0607
1
1.0782
10
1.0943
13
1.1283
322
1.0919
201
 
STO-3G 3-21G 3-21G* 6-31G 6-31G* 6-31G** 6-31+G** 6-311G* 6-311G** 6-31G(2df,p) 6-311+G(3df,2p) 6-311+G(3df,2pd) TZVP cc-pVDZ cc-pVTZ cc-pVQZ aug-cc-pVDZ aug-cc-pVTZ aug-cc-pVQZ cc-pV(D+d)Z cc-pV(T+d)Z aug-cc-pV(T+d)Z cc-pCVDZ cc-pCVTZ cc-pCVQZ aug-cc-pCVTZ Sadlej_pVTZ daug-cc-pVDZ daug-cc-pVTZ daug-cc-pVQZ
Quadratic configuration interaction QCISD 1.1114
243
1.1189
4038
1.1065
2668
1.1082
2678
1.1097
3163
1.0974
2688
1.0979
2523
1.1024
2865
1.1066
2639
1.1002
2293
1.1172
627
1.0854
30
1.1016
1781
1.1123
2486
1.0988
1948
1.0851
18
1.1147
1526
1.0970
1277
1.0841
8
1.1001
13
1.0857
50
1.0851
15
1.0989
18
1.0875
58
1.0649
1
1.0869
9
1.1019
13
1.1346
326
1.0963
223
 
QCISD(T) 1.1083
35
1.0954
59
1.0940
41
1.0982
41
1.1126
1920
1.0875
57
1.0883
72
1.1064
877
1.0918
97
1.0884
38
1.1075
497
1.0869
30
1.0999
1284
1.1133
1510
1.0999
1118
1.0865
18
1.1128
1203
1.0944
810
1.0868
18
1.1026
9
1.0872
41
1.0869
15
1.1002
18
1.0891
58
1.0670
1
1.0862
10
1.1038
13
1.1088
261
1.0988
207
 
QCISD(T)=FULL         1.1064
1006
  1.0987
960
1.0924
9
1.0886
5
  1.1099
413
    1.1148
959
1.1007
654
1.0946
281
1.1138
838
1.1070
459
1.0971
199
1.1020
6
1.0829
38
1.0838
10
1.0988
7
1.0875
44
1.0659
1
1.0886
6
1.1029
13
1.1155
225
1.0965
179
 
QCISD(TQ) 1.1084
35
1.0933
35
1.0919
29
1.0956
29
1.1374
178
1.0860
35
1.0894
146
1.0907
29
1.0912
35
1.0870
29
1.0907
49
1.0904
16
1.0902
24
1.1095
155
1.0935
107
1.0915
39
1.1028
134
1.0924
56
1.0807
16
        1.0986
6
      1.1073
11
1.0937
8
 
QCISD(TQ)=FULL         1.1021
119
  1.0893
104
      1.0944
25
    1.1106
116
1.0914
83
1.0858
36
1.1036
101
1.0896
45
1.0783
16
        1.0971
6
      1.1060
10
1.0817
6
 
Coupled Cluster CCD 1.1113
237
1.1053
2737
1.1060
2623
1.1077
2667
1.1190
3759
1.0970
2610
1.0974
2468
1.1024
2620
1.1031
2158
1.1006
2066
1.1173
606
1.0848
30
1.1008
1780
1.1119
2468
1.0998
1725
1.0852
20
1.1142
1569
1.1001
1055
1.0853
10
1.0997
13
1.0852
50
1.0847
15
1.1002
38
1.0868
76
1.0644
1
1.0838
10
1.1016
13
1.1342
326
1.0974
189
 
CCSD 1.1078
35
1.0942
56
1.0927
38
1.0964
38
1.1084
2387
1.1091
532
1.1086
545
1.1133
556
1.1128
550
1.1055
1317
1.1176
610
1.0852
30
1.1025
1539
1.1150
1770
1.0976
1744
1.0935
327
1.1162
1321
1.0984
1056
1.0923
139
1.1011
9
1.0859
48
1.0849
15
1.0979
14
1.0873
54
1.0647
1
1.0866
9
1.1018
13
1.1400
282
1.0931
172
 
CCSD=FULL 1.1077
35
1.0921
35
1.0921
35
1.0958
35
1.1056
1803
1.0839
35
1.0843
35
1.0902
44
1.0891
40
1.1037
1312
1.1168
594
1.0854
24
1.1023
1499
1.1156
1540
1.0912
1537
1.1161
324
1.1157
1283
1.0955
1001
1.0975
107
1.1001
9
1.0815
50
1.0813
15
1.0970
14
1.0850
51
1.0634
1
1.0824
7
1.1009
13
1.1404
272
1.0951
175
 
CCSD(T) 1.1083
35
1.0949
70
1.0939
41
1.0982
41
1.1089
1975
1.0999
933
1.1025
668
1.1060
900
1.1071
685
1.1057
608
1.1073
498
1.0876
34
1.0996
1251
1.1133
1530
1.0999
1150
1.1158
361
1.1137
1259
1.0954
753
1.0980
264
1.1014
13
1.0874
44
1.0868
15
1.1012
50
1.0881
82
1.0669
1
1.0860
10
1.1037
13
1.1093
245
1.0991
202
 
CCSD(T)=FULL 1.1082
35
1.0934
35
1.0934
35
1.0971
35
1.1049
1540
1.0851
35
1.0856
35
1.0921
39
1.0906
40
1.0858
35
1.1073
459
1.0859
30
1.0993
1285
1.1119
1412
1.0960
1035
1.0943
365
1.1122
1158
1.1019
657
1.0961
243
1.1004
13
1.0822
45
1.0831
15
1.1003
50
1.0857
85
1.0658
1
1.0861
11
1.1028
13
1.1087
236
1.0957
194
 
STO-3G 3-21G 3-21G* 6-31G 6-31G* 6-31G** 6-31+G** 6-311G* 6-311G** 6-31G(2df,p) 6-311+G(3df,2p) 6-311+G(3df,2pd) TZVP cc-pVDZ cc-pVTZ cc-pVQZ aug-cc-pVDZ aug-cc-pVTZ aug-cc-pVQZ cc-pV(D+d)Z cc-pV(T+d)Z aug-cc-pV(T+d)Z cc-pCVDZ cc-pCVTZ cc-pCVQZ aug-cc-pCVTZ Sadlej_pVTZ daug-cc-pVDZ daug-cc-pVTZ daug-cc-pVQZ

average calculated bond lengths (Å)
Methods with effective core potentials (select basis sets)
CEP-31G CEP-31G* CEP-121G CEP-121G* LANL2DZ SDD cc-pVTZ-PP aug-cc-pVTZ-PP Def2TZVPP
hartree fock HF 1.0943
4774
1.0967
4614
1.0913
4782
1.0929
4632
1.0889
4771
1.0889
4782
1.0748
47
  1.0923
5382
ROHF 1.0900
12
1.0823
5
1.0871
12
1.0781
5
1.0839
12
1.0837
12
1.0720
12
  1.0870
125
density functional LSDA 1.1111
35
1.1117
35
1.1060
35
1.1065
35
1.0996
35
1.0995
35
1.0946
47
  1.1532
125
BLYP 1.1058
35
1.1061
35
1.0990
35
1.0991
35
1.0992
35
1.0993
35
1.0897
47
  1.1225
671
B1B95 1.1059
2727
1.1066
2700
1.0930
117
1.0942
109
1.0914
117
1.0914
117
1.0821
47
  1.1133
674
B3LYP 1.1077
4760
1.1083
4584
1.1012
4747
1.1026
4573
1.1005
4739
1.1014
4714
1.0836
47
  1.1012
5372
B3LYPultrafine 1.0996
47
1.1005
47
1.0937
47
1.0943
47
1.0932
49
1.0928
47
1.0836
47
  1.1155
674
B3PW91 1.0974
35
1.0985
35
1.0922
35
1.0929
35
1.0908
35
1.0908
35
1.0853
47
  1.1166
674
mPW1PW91 1.0954
35
1.0966
35
1.0904
35
1.0912
35
1.0889
35
1.0889
35
1.0840
47
  1.1152
674
M06-2X 1.0955
35
1.0963
35
1.0887
35
1.0897
35
1.0887
35
1.0886
35
1.0833
47
  1.1147
666
PBEPBE 1.1057
35
1.1063
35
1.0998
35
1.1003
35
1.0993
35
1.0993
35
1.0929
47
1.0842
2
1.1095
5367
PBEPBEultrafine 1.1057
35
1.1063
35
1.0998
35
1.1003
35
1.0993
35
1.0993
35
1.0929
47
  1.1247
671
PBE1PBE 1.0968
35
1.0980
35
1.0917
35
1.0926
35
1.0903
35
1.0903
35
1.0857
47
  1.1167
674
HSEh1PBE 1.0970
35
1.0982
35
1.0918
35
1.0927
35
1.0902
35
1.0902
35
1.0853
47
  1.1164
674
TPSSh             1.0853
47
  1.1168
677
wB97X-D 1.1163
1095
1.1185
1043
1.1112
1115
1.1138
1029
1.1098
1112
1.1098
1112
1.0840
47
  1.1153
674
B97D3             1.0883
47
  1.1205
674
Moller Plesset perturbation MP2 1.1164
4752
1.1111
4588
1.1081
4729
1.1027
4570
1.1078
4746
1.1078
4745
1.0834
47
  1.0993
5365
MP2=FULL 1.1040
35
1.0986
35
1.0959
35
1.0894
35
1.0970
35
1.0969
35
1.0792
47
  1.1109
668
ROMP2 1.1101
12
1.0956
5
1.1030
12
1.0872
5
1.1030
12
1.1033
12
1.0799
9
  1.0912
100
MP3 1.1061
35
1.1003
35
1.0976
35
1.0903
35
1.0983
35
1.0981
35
1.0815
47
  1.1237
470
MP3=FULL             1.0758
31
  1.1089
388
MP4 1.1090
35
1.1033
35
1.1009
35
1.0936
35
1.1011
35
1.1010
35
1.0855
38
  1.1187
292
MP4=FULL 1.1090
35
1.1033
35
1.1009
35
1.0936
35
1.1010
35
1.1009
35
1.0810
38
  1.1126
338
B2PLYP 1.0996
15
1.0988
15
1.0929
15
1.0915
15
1.0925
15
1.0925
15
1.0826
47
  1.1136
674
B2PLYP=FULL 1.1102
2
1.1140
2
1.1045
2
1.1080
2
1.1041
2
1.1042
2
1.0814
47
  1.1129
674
B2PLYP=FULLultrafine             1.0813
47
  1.1129
674
Configuration interaction CID 1.1035
35
1.0973
35
1.0951
35
1.0878
35
1.0955
35
1.0954
35
1.0768
47
  1.1144
524
CISD 1.1034
35
1.0973
35
1.0952
35
1.0881
35
1.0955
35
1.0954
35
1.0769
47
  1.1151
511
Quadratic configuration interaction QCISD 1.1093
35
1.1028
35
1.1010
35
1.0930
35
1.1012
35
1.1010
35
1.0836
47
  1.1207
543
QCISD(T) 1.1104
35
1.1041
35
1.1022
35
1.0943
35
1.1023
35
1.1022
35
1.0853
47
  1.1086
441
QCISD(T)=FULL             1.0807
47
  1.1097
378
QCISD(TQ) 1.1105
35
1.1041
35
1.1021
35
1.0942
35
1.1023
35
1.1022
35
    1.1002
20
QCISD(TQ)=FULL                 1.1026
12
Coupled Cluster CCD 1.1092
35
1.1026
35
1.1007
35
1.0925
35
1.1010
35
1.1009
35
1.0831
47
  1.1205
536
CCSD 1.1093
35
1.1027
35
1.1009
35
1.0928
35
1.1011
35
1.1010
35
1.0833
47
  1.1223
510
CCSD=FULL 1.1093
35
1.1027
35
1.1009
35
1.0928
35
1.1010
35
1.1008
35
1.0788
47
  1.1195
518
CCSD(T) 1.1104
35
1.1041
35
1.1021
35
1.0942
35
1.1023
35
1.1022
35
1.0852
44
1.0767
2
1.1092
432
CCSD(T)=FULL 1.1104
35
1.1041
35
1.1021
35
1.0942
35
1.1022
35
1.1020
35
1.0806
47
  1.1080
404
For descriptions of the methods (AM1, HF, MP2, ...) and basis sets (3-21G, 3-21G*, 6-31G, ...) see the glossary in section I.C. Predefined means the basis set used is determined by the method.