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Comparison of experiment and theory for aFClF

18 10 24 13 42
Species with coordinate aFClF
Species Name
ClF3 Chlorine trifluoride
ClF5 chlorinepentafluoride
ClOF3 Chlorine trifluoride oxide
The small subscript is the number of angles with completed calculations.
Click on an entry for a histogram of the difference distribution.
rms differences (calculated - experiment) in degrees
Methods with predefined basis sets

rms differences (calculated - experiment) in degrees
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) 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-pCVTZ aug-cc-pCVTZ daug-cc-pVTZ
hartree fock HF 12.24 5.33 2.94 4.33 2.04 2.04 1.84 1.94 1.94 1.94   1.84 1.84 1.64 1.31 1.74 1.64 1.31 1.42 1.23 1.22 1.23   1.92
ROHF                                     1.42 1.12        
density functional LSDA 5.34 1.01 1.64 1.32 1.24 1.24 1.04 1.14 1.14 1.04   1.23 1.04 0.94   0.94 1.03   1.32 1.02 0.92 1.02    
BLYP 5.94 4.02 2.84 34.31 1.54 1.54 2.44 3.03 2.74 1.44   3.03 2.34 2.14   3.03 2.43   3.12 3.02 2.92 2.92 2.92  
B1B95 11.14   2.34 3.64 1.74 1.74 1.34 1.34 1.34 1.44   1.13 1.34 1.04   1.14 1.04   0.42 0.12 0.22 0.22 0.32  
B3LYP 10.84 2.94 1.54 2.34 1.34 1.34 0.84 0.94 0.94 0.94   0.74 0.84 0.84 0.21 0.84 0.84 0.21 0.52 0.63 0.72 0.63 0.72  
B3LYPultrafine   3.23     1.24 1.33 0.93 1.03       0.83 0.93 0.93   0.93 0.84   0.52 0.72 0.72 0.62 0.72  
B3PW91 10.44 2.84 1.54 2.34 1.34 1.34 0.94 0.94 0.94 1.04   0.83 0.84 0.84   0.83 0.93   0.42 0.62 0.52 0.62 0.52  
mPW1PW91 10.94 3.74 1.94 3.14 1.54 1.54 1.04 1.14 1.14 1.24   0.93 1.04 0.94   0.93 0.93   0.12 0.22 0.22 0.22 0.12  
M06-2X 14.13 6.53 2.72 5.83 2.24 2.43 2.13 2.33 2.33 2.13 1.52 2.03 2.23 1.63   2.03 1.73   1.72 1.12 1.12 1.12 1.32  
PBEPBE 5.54 3.94 2.34 20.22 1.24 1.24 1.74 1.84 1.84 1.14   2.23 1.64 1.64   2.03 1.73   2.32 2.22 2.12 2.12 2.12  
PBEPBEultrafine   4.03     1.33 1.33 1.93 2.23       2.23 1.93 1.73   2.13 1.73   2.42 2.12 2.12 2.12 2.12  
PBE1PBE 12.23   2.13 3.53 1.54 1.63 1.13 1.23 1.23 1.33   0.93 1.13 0.93   1.03 1.03   0.22 0.22 0.12 0.12 0.02  
HSEh1PBE 12.23 3.64 2.03 3.33 1.54 1.63 1.04 1.13 1.13 1.33   0.93 1.13 0.94   0.93 0.93   0.12 0.22 0.22 0.22 0.12  
TPSSh 10.73 1.63 1.53 2.11 1.34 1.43 0.94 1.03 1.03 1.04   0.93 1.03 0.84   0.93 0.93   0.52 0.72 0.62 0.62    
wB97X-D 12.93 4.93 1.84 4.33 1.44 1.63 1.04 1.33 1.14 1.33   0.84 1.04 0.84   0.93 0.94   0.22 0.12 0.02 0.02 0.02  
B97D3   36.93     36.93   1.11   36.93   2.24 1.21   36.93     36.93             2.62
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) 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-pCVTZ aug-cc-pCVTZ daug-cc-pVTZ
Moller Plesset perturbation MP2 7.02 5.54 2.44 6.42 1.64 1.74 0.74 0.84 1.04 1.44   0.64 1.04 0.84   0.44 0.93   0.42 0.43 0.12 0.43 0.02  
MP2=FULL 7.32 11.24 2.44 6.32 1.64 1.64 0.74 1.04 1.04 1.34   0.63 1.04 0.84   0.54 0.93   0.42 0.43 0.12 0.43 0.02  
ROMP2                                     0.42 0.02 0.12 0.12    
MP3         2.44   1.94         2.23 2.33 1.83         1.82 1.32 1.52 1.32    
MP3=FULL   8.23 3.63 6.93 2.34 2.63 1.84 2.33 2.33 2.23   2.23 2.33 1.83   1.93 1.72   1.82 1.22 1.52 1.32    
MP4         1.64       0.64     0.13 0.73 0.73   0.83 0.32   0.22 0.32 0.42 0.22    
MP4=FULL         1.73       0.53       0.73 0.73   0.83 0.22   0.22 0.42 0.32 0.22    
B2PLYP 12.83 4.23 1.93 9.21 1.44 1.53 0.83 0.93 0.93 1.23   0.63 0.93 0.84   0.83 0.93   0.22 0.52 0.52 0.52 0.52  
B2PLYP=FULL 12.83 4.23 1.93 9.21 1.53 1.53 0.83 0.93 0.93 1.13   0.63 0.93 0.83   0.83 0.93   0.22 0.62 0.52 0.52 0.52  
B2PLYP=FULLultrafine 12.73 4.23 2.03 9.21 0.82 1.53 0.83 0.93 0.93 1.13   0.63 0.12 0.42   0.83     0.22 0.52 0.52 0.42 0.52  
Configuration interaction CID   5.94 3.04 4.94 2.14     1.94                     1.42 1.02 1.22 1.02    
CISD   5.74 2.94 4.64 2.14     1.84                     1.32 1.02 1.12 1.02    
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) 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-pCVTZ aug-cc-pCVTZ daug-cc-pVTZ
Quadratic configuration interaction QCISD   5.82 2.84 2.82 1.94 1.94 1.34 1.54 1.63 1.83   1.43 1.44 1.33   1.13 1.43   1.02 0.62 0.72 0.72    
QCISD(T)         2.13     1.43       1.13 1.43 1.13   0.83 0.62   0.82 0.42 0.52 0.42    
QCISD(T)=FULL         2.13   1.13           1.43 1.13   0.83 0.72   0.82 0.32 0.52 0.42    
Coupled Cluster CCD   6.84 3.24 5.24 2.24 2.24 1.74 1.94 2.13 2.13   1.93 1.94 1.63   1.63 1.73   1.52 1.12 1.22 1.12    
CCSD         2.33         2.03   1.63 1.83 1.43   1.33 1.12   1.22 0.82 1.02 0.92 0.92  
CCSD=FULL         2.23         1.93   1.63 1.83 1.43   1.33 1.22   1.22 0.72 1.02 0.82 0.92  
CCSD(T)         2.23 2.23   1.63       1.33 1.63 1.23   1.03 0.72   1.02 0.52 0.62 0.52    
CCSD(T)=FULL         2.13             1.33 1.63 1.23   0.93 0.82   1.02 0.42 0.62 0.52    
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) 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-pCVTZ aug-cc-pCVTZ daug-cc-pVTZ

rms differences (calculated - experiment) in degrees
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 3.84 1.84 3.73 1.64 4.63 3.44     3.34
density functional B3LYP 1.64 0.84 1.42 0.84 2.04 0.84     1.04
PBEPBE                 2.14
wB97X-D 3.53 0.93 3.23 0.93 4.13 3.03      
Moller Plesset perturbation MP2   0.64   0.54         1.32
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.