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Calculated Frequencies for LiO (lithium oxide) 2Σ C∞v

19 07 18 15 43
InChI=1S/Li.O INChIKey=QTJOIXXDCCFVFV-UHFFFAOYSA-N


Click on an entry for details. A subscript indicates the number of imaginary frequencies.
An R subscript indicates raman activity data is available.
For a comparison of experimental versus calculated see section IV.C.1 Compare vibrational frequencies
Vibrational frequency in cm-1 (unscaled)
Methods with predefined basis sets
semi-empirical AM1 817
PM6 666
composite G2 925
G3 925
G3B3 858
G3MP2 885
G4 864
CBS-Q 924
molecular mechanics DREIDING 1301

Vibrational frequency in cm-1 (unscaled)
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(T+d)Z cc-pCVTZ daug-cc-pVTZ
hartree fock HF 912 1063 1063 925 925 925 861 914 865 915 883 815 878 853 855 838 843 849 853 853 843
ROHF   929 929 859 888 888 844 868 869     818 882 856 858 842 847 853   857  
density functional LSDA 1244 879 879 824 858 858 808 843 843 863   789 847 831   817 819   831 833  
BLYP 843 848 848 796 828 828 821 873 810 835   760 822 800   771 783     801  
B1B95 882 873 873 816 843 dnf dnf 827 827 850   785 830 819   dnf dnf     819  
B3LYP 885 1015 1015 912 919 919 842 898 840 909 818 786 852 827 821 802 811 814 827 827  
B3LYPultrafine   887     857 857 800 837       788 852 824   802 809     827  
B3PW91 867 998 998 896 904 904 834 885 832 894   780 839 819   797       820  
mPW1PW91 877 1010 886 827 912 912 842 894 839 860   788 847 826   805 813   826 827  
M06-2X 917 907 907 845 869 869 819 857 857 878 842R 804 859 850   818 839     849  
PBEPBE 835 847 846 796 827 827 772 813 811 833 794 763 818 805   776 786   802 802  
PBEPBEultrafine   849     826 826 771 807       763 819 797   776 781     802  
PBE1PBE 882 886 886 829 859 859 806 841 841 863   790 850 829   807 816     829  
HSEh1PBE 881 883 883 828 857 857 804 839 839 862   788 848 826   805 813     827  
TPSSh   867 867 815 844 844 792 827   847   778 832 817   793 804     817  
wB97X-D     876   852   797   813     773 797 772     758        
B97D3   818     798   746   780   760 739   771     757       754R
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(T+d)Z cc-pCVTZ daug-cc-pVTZ
Moller Plesset perturbation MP2 1037 1043 1043 907 849 911 822 837 837 892 843 782 841 814 809 779 791 799 814 815  
MP2=FULL 1036 1042 893 817 850 913 855 912 842 851   782 840 825 822 844 808 814   820  
ROMP2 943 897 897 818 852 852 782 839 839 853   781 842 815   779       816  
MP3         859   859         791 851 828           829  
MP3=FULL         860   807         790 851 840           834  
MP4   876     905     903 830     775 831 810   769 787   810 811  
MP4=FULL   875     841       836       831 823   844 805     817  
B2PLYP 900 890 890 826 858 858 797 841 841 863   788 851 825   797 807     826  
B2PLYP=FULL 900 890 890 826 859 858 801 843 843 863   788 851 829   817 812     827  
B2PLYP=FULLultrafine         858R               851R 827R     810        
Configuration interaction CID   902 902 825 860     849                       831  
CISD   891 891 817 854     844                       828  
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(T+d)Z cc-pCVTZ daug-cc-pVTZ
Quadratic configuration interaction QCISD   1033 877 803 908 843 823 905 834 853   779 834 817   780 797   817 818  
QCISD(T)         908     905       773 830 811   772 790     812  
QCISD(T)=FULL         840   784           830 824 822 847 808 816   818  
QCISD(TQ)         844   780           835 815 811 777 793 802      
QCISD(TQ)=FULL         847   788           835 827 826 853 812        
Coupled Cluster CCD   900 900 822 856 856 794 915 845 863   787 849 825   792 806     826  
CCSD         913     911   858   782 841 821 819 786 801 811   822  
CCSD=FULL         850         856   782 841 833 834 861 820 828   827  
CCSD(T)         910 910   907     793 774 832 813 809 774 792 800 813 814  
CCSD(T)=FULL         842             774 832 826 824 850 810 818   819  
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(T+d)Z cc-pCVTZ daug-cc-pVTZ

Vibrational frequency in cm-1 (unscaled)
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 752 760 811 843 883 873     856
density functional B1B95 2617i1 752              
B3LYP 736 746 768 801 794 778     822
PBEPBE                 796
Moller Plesset perturbation MP2 735 733 765 805 861 851     816
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.
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