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Comparison of experiment and theory for rGeSe

18 10 23 14 56
Species with coordinate rGeSe
Species Name
GeSe Germanium monoselenide
The small prefix is the number of bonds with completed calculations.
Click on an entry for a histogram of the difference distribution.
rms differences (calculated - experiment) in Å
Methods with predefined basis sets
semi-empirical PM3 1 0.120
PM6 1 0.028
composite G2 1 0.030
G3 1 0.004
G3B3 1 0.036
G4 1 0.022
CBS-Q 1 0.029

rms differences (calculated - experiment) in 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) TZVP cc-pVDZ cc-pVTZ cc-pVQZ aug-cc-pVDZ aug-cc-pVTZ aug-cc-pVQZ daug-cc-pVDZ daug-cc-pVTZ
hartree fock HF 1 0.114 1 0.051 1 0.014 1 0.010 1 0.030 1 0.030 1 0.025 1 0.006 1 0.006 1 0.046 1 0.010 1 0.006 1 0.009 1 0.009 1 0.011 1 0.003 1 0.009 1 0.011 1 0.003 1 0.009
density functional BLYP 1 0.141 1 0.105 1 0.045 1 0.072 1 0.032 1 0.032 1 0.037 1 0.056 1 0.056 1 0.009 1 0.048 1 0.056 1 0.059 1 0.050   1 0.061 1 0.050   1 0.061 1 0.050
B1B95 1 0.139 1 0.002 1 0.002 1 0.022 1 0.018 1 0.018 1 0.014 1 0.005 1 0.005 1 0.038 1 0.001 1 0.005 1 0.005 1 0.000   1 0.009 1 0.001   1 0.009 1 0.001
B3LYP 1 0.140 1 0.080 1 0.019 1 0.045 1 0.005 1 0.005 1 0.009 1 0.028 1 0.028 1 0.017 1 0.021 1 0.028 1 0.030 1 0.022 1 0.021 1 0.032 1 0.022 1 0.021 1 0.032 1 0.022
B3LYPultrafine   1 0.080     1 0.005 1 0.005 1 0.009 1 0.028   1 0.017 1 0.021 1 0.028 1 0.030 1 0.022   1 0.032 1 0.022   1 0.032 1 0.022
B3PW91 1 0.138 1 0.074 1 0.010 1 0.033 1 0.007 1 0.007 1 0.003 1 0.016 1 0.016 1 0.028 1 0.009 1 0.015 1 0.017 1 0.011   1 0.019 1 0.010   1 0.019 1 0.010
mPW1PW91 1 0.137 1 0.069 1 0.005 1 0.028 1 0.012 1 0.012 1 0.009 1 0.010 1 0.010 1 0.033 1 0.004 1 0.010 1 0.011 1 0.005   1 0.014 1 0.005   1 0.014 1 0.005
M06-2X 1 0.139 1 0.065 1 0.006 1 0.026 1 0.013 1 0.013 1 0.009 1 0.013 1 0.013 1 0.029 1 0.008 1 0.016 1 0.011 1 0.011   1 0.015 1 0.011   1 0.015 1 0.011
PBEPBE 1 0.144 1 0.096 1 0.032 1 0.055 1 0.014 1 0.014 1 0.018 1 0.038 1 0.038 1 0.009 1 0.030 1 0.038 1 0.040 1 0.032   1 0.042 1 0.033   1 0.042 1 0.032
PBEPBEultrafine   1 0.096     1 0.014 1 0.014 1 0.018 1 0.038   1 0.009 1 0.030 1 0.038 1 0.040 1 0.032   1 0.042 1 0.033   1 0.042 1 0.032
PBE1PBE 1 0.139 1 0.005 1 0.005 1 0.029 1 0.012 1 0.012 1 0.009 1 0.011 1 0.011 1 0.033 1 0.004 1 0.010 1 0.011 1 0.005   1 0.014 1 0.005   1 0.014 1 0.005
HSEh1PBE 1 0.140 1 0.071 1 0.008 1 0.032 1 0.010 1 0.010 1 0.006 1 0.013 1 0.013 1 0.030 1 0.007 1 0.013 1 0.014 1 0.009   1 0.017 1 0.009   1 0.017 1 0.009
TPSSh 1 0.143 1 0.080 1 0.014 1 0.037 1 0.005 1 0.005 1 0.002 1 0.018 1 0.018 1 0.027 1 0.011 1 0.017 1 0.019 1 0.012 1 0.011 1 0.022 1 0.012 1 0.010 1 0.021 1 0.012
wB97X-D 1 0.150 1 0.053 1 0.004 1 0.017 1 0.021 1 0.021 1 0.017 1 0.001 1 0.001 1 0.039 1 0.006 1 0.001 1 0.001 1 0.003 1 0.004 1 0.004 1 0.003 1 0.004 1 0.004 1 0.003
B97D3 1 0.108 1 0.099 1 0.032 1 0.056 1 0.015 1 0.015 1 0.019 1 0.041 1 0.041 1 0.008 1 0.033 1 0.041 1 0.042 1 0.033 1 0.032 1 0.044 1 0.033 1 0.032 1 0.044 1 0.033
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 daug-cc-pVDZ daug-cc-pVTZ
Moller Plesset perturbation MP2 1 0.072 1 0.112 1 0.024 1 0.065 1 0.017 1 0.017 1 0.021 1 0.036 1 0.036 1 0.011 1 0.027 1 0.018 1 0.027 1 0.005 1 0.002 1 0.035 1 0.006 1 0.005 1 0.035 1 0.005
MP2=FULL 1 0.073 1 0.112 1 0.021 1 0.064 1 0.008 1 0.008 1 0.012 1 0.024 1 0.024 1 0.042 1 0.008 1 0.020 1 0.025 1 0.003 1 0.010 1 0.032 1 0.007 1 0.015 1 0.032 1 0.008
B2PLYP 1 0.107 1 0.099 1 0.024 1 0.058 1 0.012 1 0.012 1 0.016 1 0.035 1 0.035 1 0.012 1 0.027 1 0.029 1 0.033 1 0.021   1 0.037 1 0.022   1 0.037 1 0.021
B2PLYP=FULL 1 0.108 1 0.099 1 0.024 1 0.057 1 0.010 1 0.010 1 0.013 1 0.031 1 0.031 1 0.022 1 0.021 1 0.030 1 0.032 1 0.019   1 0.036 1 0.018   1 0.036 1 0.017
B2PLYP=FULLultrafine 1 0.108 1 0.099 1 0.024 1 0.057 1 0.010 1 0.010 1 0.013 1 0.031 1 0.031 1 0.022 1 0.021 1 0.030 1 0.032 1 0.019   1 0.036 1 0.018   1 0.036 1 0.017
Configuration interaction CID   1 0.080 1 0.002 1 0.038 1 0.005     1 0.013     1 0.004   1 0.007 1 0.012         1 0.013 1 0.013
CISD   1 0.091 1 0.008 1 0.048 1 0.000     1 0.018     1 0.008   1 0.011 1 0.010         1 0.017 1 0.011
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 daug-cc-pVDZ daug-cc-pVTZ
Quadratic configuration interaction QCISD   1 0.125 1 0.027 1 0.075 1 0.019 1 0.019 1 0.024 1 0.039 1 0.039 1 0.012 1 0.026 1 0.025 1 0.032 1 0.009   1 0.038 1 0.009   1 0.039 1 0.008
QCISD(T)         1 0.030     1 0.051     1 0.039 1 0.036 1 0.043 1 0.020   1 0.050 1 0.020   1 0.050 1 0.020
QCISD(T)=FULL         1 0.022   1 0.026       1 0.024   1 0.041 1 0.013 1 0.005 1 0.047 1 0.009 1 0.000 1 0.047 1 0.007
Coupled Cluster CCD   1 0.088 1 0.010 1 0.045 1 0.003 1 0.003 1 0.008 1 0.021 1 0.021 1 0.024 1 0.012 1 0.008 1 0.014 1 0.005   1 0.022 1 0.004   1 0.022 1 0.005
CCSD         1 0.010 1 0.010 1 0.014 1 0.028 1 0.028 1 0.019 1 0.018 1 0.015 1 0.021 1 0.001 1 0.007 1 0.028 1 0.001 1 0.010 1 0.028 1 0.001
CCSD=FULL         1 0.003         1 0.044 1 0.004 1 0.018 1 0.019 1 0.005 1 0.013 1 0.026 1 0.009 1 0.018 1 0.026 1 0.010
CCSD(T)         1 0.025 1 0.025 1 0.029 1 0.045 1 0.045 1 0.006 1 0.034 1 0.031 1 0.038 1 0.016 1 0.008 1 0.045 1 0.016 1 0.005 1 0.045 1 0.016
CCSD(T)=FULL         1 0.017           1 0.020 1 0.034 1 0.035 1 0.010 1 0.002 1 0.042 1 0.005 1 0.004 1 0.042 1 0.005
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 daug-cc-pVDZ daug-cc-pVTZ

rms differences (calculated - experiment) in 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 0.045   1 0.045   1 0.067 1 0.054 1 0.018   1 0.009
ROHF             1 0.018    
density functional LSDA             1 0.000    
BLYP             1 0.050   1 0.050
B1B95             1 0.001   1 0.001
B3LYP 1 0.087   1 0.087   1 0.109 1 0.095 1 0.020   1 0.022
B3LYPultrafine             1 0.020   1 0.022
B3PW91             1 0.009   1 0.011
mPW1PW91             1 0.002   1 0.005
M06-2X             1 0.010   1 0.012
PBEPBE             1 0.032   1 0.032
PBEPBEultrafine             1 0.032   1 0.032
PBE1PBE             1 0.003   1 0.005
HSEh1PBE             1 0.005   1 0.009
TPSSh             1 0.010   1 0.012
wB97X-D 1 0.058   1 0.058   1 0.079 1 0.065 1 0.006   1 0.003
B97D3             1 0.035   1 0.034
Moller Plesset perturbation MP2 1 0.114   1 0.114   1 0.130 1 0.120 1 0.003   1 0.007
MP2=FULL             1 0.008   1 0.008
ROMP2             1 0.003    
MP3             1 0.013    
MP3=FULL             1 0.016    
MP4             1 0.019    
MP4=FULL             1 0.014    
B2PLYP             1 0.016   1 0.022
B2PLYP=FULL             1 0.015   1 0.022
B2PLYP=FULLultrafine             1 0.015   1 0.022
Configuration interaction CID             1 0.021   1 0.012
CISD             1 0.019   1 0.011
Quadratic configuration interaction QCISD             1 0.000   1 0.011
QCISD(T)             1 0.012   1 0.023
QCISD(T)=FULL             1 0.007   1 0.023
Coupled Cluster CCD             1 0.013   1 0.002
CCSD             1 0.008   1 0.003
CCSD=FULL             1 0.011   1 0.004
CCSD(T)             1 0.007   1 0.019
CCSD(T)=FULL             1 0.003   1 0.019
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.