Wall clock time and date at job start Tue Mar 31 2020 19:18:42                  
 AMSOL-version 7.1
 by G. D. Hawkins, D. J. Giesen, G. C. Lynch, C. C. Chambers,
 I. Rossi, J. W. Storer, J. Li, J. D. Thompson, P. Winget,
 B. J. Lynch, D. Rinaldi, D. A. Liotard, C. J. Cramer, and D. G. Truhlar

 Copyright 2004 by Regents of the University of Minnesota.
 All rights reserved.

 Notice: recipients of this code are asked to comply
 with the user agreement in Section 1 of the documentation file.


 *******************************************************************************
 *  1SCF     - SCF CALCULATION WITHOUT GEOMETRY OPTIMIZATION 
 *           - USE EF ROUTINE FOR MINIMUM SEARCH (DEFAULT)
 *  GEO-OK   - OVERRIDE INTERATOMIC DISTANCE CHECK
 *  TLIMIT=  - A TIME OF      15. SECONDS REQUESTED
 *  CHARGE   - CHARGE ON SYSTEM= -1
 *  AM1      - THE AM1 HAMILTONIAN TO BE USED
 *  DEV      - DEVELOPER OPTIONS ARE ALLOWED
 *  SM5.42R  - SM5.42R CALCULATIONS WILL BE PERFORMED
 *           - CHARGE MODEL 2 WILL BE USED (CM2A)
 *           - THE SOLVENT IS USER-SPECIFIED      
 *  DIELEC   - THE SOLVENT DIELECTRIC CONSTANT IS   2.06
 *  IOFR     - THE SOLVENT INDEX OF REFRACTION IS 1.4345
 *  ALPHA    - THE SOLVENT ALPHA IS 0.00
 *  BETA     - THE SOLVENT BETA IS 0.00
 *  GAMMA    - THE SOLVENT MACROSCOPIC SURFACE TENSION IS 
 *                 38.93 CAL MOL^-1 ANGSTROM^-2
 *  FACARB   - THE FRACTION OF AROMATIC CARBONS IS   0.00
 *  FEHALO   - THE FRACTION OF ELECTRONEGATIVE HALOGENS IS   0.00
 *******************************************************************************

   Atom   NO. Chemical  Bond length    Bond angle    Dihedral angle
  number  (k)  symbol   (angstroms)     (degrees)      (degrees)
   (I)                     NA:I         NB:NA:I        NC:NB:NA:I    NA  NB  NC
    1       1  C 
    2       2  C            1.53001 *                                 1
    3       3  C            1.53006 *   109.46900 *                   2   1
    4       4  N            1.46896 *   109.47176 *   119.99894 *     2   1   3
    5       5  C            1.47839 *   110.99936 *    47.36533 *     4   2   1
    6       6  C            1.54904 *   104.79687 *   146.36087 *     5   4   2
    7       7  C            1.55390 *   101.74452 *   323.02092 *     6   5   4
    8       8  C            1.47442 *   110.99945 *   168.20979 *     4   2   1
    9       9  H            1.09004 *   109.89077 *   117.17429 *     8   4   2
   10      10  C            1.50707 *   109.88887 *   356.14656 *     8   4   2
   11      11  O            1.21278 *   119.99906 *   296.75614 *    10   8   4
   12      12  N            1.34774 *   119.99652 *   116.75536 *    10   8   4
   13      13  C            1.48246 *   126.41841 *   359.69705 *    12  10   8
   14      14  C            1.53740 *   105.90122 *   211.08785 *    13  12  10
   15      15  H            1.09000 *   112.28596 *   104.65054 *    14  13  12
   16      16  C            1.54457 *   109.01492 *   229.74141 *    14  13  12
   17      17  N            1.48340 *   104.32242 *   137.92553 *    16  14  13
   18      18  C            1.36933 *   128.19467 *   138.19608 *    17  16  14
   19      19  H            1.07992 *   120.00539 *   346.11388 *    18  17  16
   20      20  C            1.38813 *   119.99750 *   166.39161 *    18  17  16
   21      21  N            1.31624 *   120.00201 *   349.59788 *    20  18  17
   22      22  Si           1.86793 *   120.00199 *   169.60037 *    20  18  17
   23      23  H            1.48500 *   109.47348 *    89.99653 *    22  20  18
   24      24  H            1.48502 *   109.47236 *   209.99968 *    22  20  18
   25      25  H            1.48504 *   109.46938 *   329.99521 *    22  20  18
   26      26  C            1.48329 *   103.60103 *   318.45242 *    17  16  14
   27      27  C            1.54036 *   104.53466 *    41.51409 *    26  17  16
   28      28  C            1.53000 *   112.12369 *    97.19635 *    27  26  17
   29      29  C            1.47196 *   126.69900 *   179.97438 *    12  10   8
   30      30  H            1.09004 *   109.47262 *   300.00214 *     1   2   3
   31      31  H            1.08995 *   109.47344 *    59.99936 *     1   2   3
   32      32  H            1.09000 *   109.46775 *   179.97438 *     1   2   3
   33      33  H            1.09000 *   109.47136 *   240.00536 *     2   1   3
   34      34  H            1.08999 *   109.46712 *   173.17108 *     3   2   1
   35      35  H            1.09002 *   109.47301 *   293.17121 *     3   2   1
   36      36  H            1.09004 *   109.47244 *    53.16997 *     3   2   1
   37      37  H            1.09003 *   110.37828 *   265.18793 *     5   4   2
   38      38  H            1.09000 *   110.37697 *    27.53184 *     5   4   2
   39      39  H            1.09008 *   110.98991 *    81.02172 *     6   5   4
   40      40  H            1.08996 *   110.99749 *   204.83492 *     6   5   4
   41      41  H            1.09003 *   110.67888 *   277.17576 *     7   6   5
   42      42  H            1.09003 *   110.84861 *   153.86047 *     7   6   5
   43      43  H            1.09002 *   110.07779 *    92.14070 *    13  12  10
   44      44  H            1.09003 *   110.56269 *   330.28759 *    13  12  10
   45      45  H            1.09007 *   110.45842 *    19.21785 *    16  14  13
   46      46  H            1.08995 *   110.57194 *   256.69399 *    16  14  13
   47      47  H            0.96994 *   120.00573 *   180.02562 *    21  20  18
   48      48  H            1.09004 *   110.46222 *   160.26282 *    26  17  16
   49      49  H            1.09004 *   110.46724 *   282.83671 *    26  17  16
   50      50  H            1.09000 *   109.47343 *   302.42146 *    28  27  26
   51      51  H            1.08996 *   109.47446 *    62.41746 *    28  27  26
   52      52  H            1.09000 *   109.46798 *   182.41985 *    28  27  26
   53      53  H            1.09000 *   110.06566 *    29.38990 *    29  12  10
   54      54  H            1.09002 *   110.06770 *   267.87009 *    29  12  10

 Note: An asterisk (*) indicates this parameter was or will be optimized.

          Cartesian coordinates (angstroms)
    NO.       Atom         X         Y         Z
     1         6        0.0000    0.0000    0.0000
     2         6        1.5300    0.0000    0.0000
     3         6        2.0400    1.4426    0.0000
     4         7        2.0197   -0.6925    1.1994
     5         6        1.3149   -1.9774    1.3942
     6         6        2.3751   -2.9197    2.0166
     7         6        3.6653   -2.4816    1.2695
     8         6        3.4662   -0.9605    1.1012
     9         1        3.9965   -0.4275    1.8904
    10         6        3.9785   -0.5225   -0.2467
    11         8        3.5679   -1.0576   -1.2546
    12         7        4.8928    0.4640   -0.3320
    13         6        5.4842    1.2161    0.8004
    14         6        5.7862    2.6232    0.2595
    15         1        5.0685    3.3642    0.6116
    16         6        7.2405    2.9991    0.6189
    17         7        7.7657    3.6477   -0.6075
    18         6        8.5483    4.7672   -0.7045
    19         1        8.6720    5.4154    0.1504
    20         6        9.1780    5.0720   -1.9034
    21         7        9.1944    4.1907   -2.8809
    22        14       10.0021    6.7330   -2.1297
    23         1       11.4191    6.6460   -1.6941
    24         1        9.9474    7.1218   -3.5618
    25         1        9.2948    7.7519   -1.3129
    26         6        7.2371    2.8001   -1.7040
    27         6        5.7874    2.4883   -1.2871
    28         6        4.7810    3.4270   -1.9556
    29         6        5.4909    1.0050   -1.5634
    30         1       -0.3634    0.5139    0.8900
    31         1       -0.3634    0.5138   -0.8899
    32         1       -0.3633   -1.0277   -0.0005
    33         1        1.8933   -0.5137   -0.8900
    34         1        3.1231    1.4450    0.1222
    35         1        1.7798    1.9199   -0.9448
    36         1        1.5803    1.9905    0.8226
    37         1        0.4740   -1.8495    2.0759
    38         1        0.9722   -2.3712    0.4373
    39         1        2.4696   -2.7471    3.0888
    40         1        2.1391   -3.9636    1.8102
    41         1        3.7326   -2.9713    0.2980
    42         1        4.5509   -2.6903    1.8697
    43         1        6.4061    0.7356    1.1280
    44         1        4.7789    1.2775    1.6292
    45         1        7.8181    2.1051    0.8543
    46         1        7.2601    3.6959    1.4568
    47         1        9.6347    4.4035   -3.7185
    48         1        7.2520    3.3451   -2.6479
    49         1        7.8142    1.8790   -1.7857
    50         1        5.0271    4.4595   -1.7078
    51         1        4.8218    3.2932   -3.0365
    52         1        3.7771    3.1970   -1.5986
    53         1        4.7892    0.9119   -2.3922
    54         1        6.4153    0.4753   -1.7941

          RHF calculation, no. of doubly occupied orbitals= 65


 REFERENCES FOR PARAMETERS IN GAS-PHASE HAMILTONIAN:

  H: (AM1): M.J.S. DEWAR ET AL, J. AM. CHEM. SOC. 107 3902-3909 (1985)          
  C: (AM1): M.J.S. DEWAR ET AL, J. AM. CHEM. SOC. 107 3902-3909 (1985)          
  N: (AM1): M.J.S. DEWAR ET AL, J. AM. CHEM. SOC. 107 3902-3909 (1985)          
  O: (AM1): M.J.S. DEWAR ET AL, J. AM. CHEM. SOC. 107 3902-3909 (1985)          
 Si: (AM1): M.J.S.DEWAR, C. JIE, ORGANOMETALLICS, 6, 1486-1490 (1987).          

 REFERENCE FOR CHARGE MODEL 2:

 J. Li, J. Xing, C. J. Cramer, and D. G. Truhlar, J. Chem. Phys. 111 (1999) 885.

 REFERENCE FOR THE PARAMETERIZATION OF THE SM5.42R SOLVATION MODEL:

 J. Li, T. Zhu, G. D. Hawkins, P. Winget, D. A. Liotard, C. J. Cramer, and 
   D. G. Truhlar, Theor. Chem. Acc. 103 (1999) 9-63

 P. Winget, J. D. Thompson C. J. Cramer,and D. G. Truhlar, J. Phys. Chem. B. submitted.



CHARGE=-1 AM1 1SCF TLIMIT=15 GEO-OK SM5.42R                                     
& SOLVNT=GENORG IOFR=1.4345 ALPHA=0.00 BETA=0.00 GAMMA=38.93                    
& DIELEC=2.06 FACARB=0.00 FEHALO=0.00 DEV                                       
 ZINC001091664466.mol2 54                                                        
                                                                                 

     1SCF WAS SPECIFIED, SO GEOMETRY OPTIMIZATION WAS NOT USED
     SCF FIELD WAS ACHIEVED                                   
Wall clock time and date at job start Tue Mar 31 2020 19:18:42                  

 Heat of formation + Delta-G solvation     =      20.489292 kcal
 Electronic energy + Delta-G solvation     =  -31991.008346 eV
 Core-core repulsion                       =   28157.109283 eV
 Total energy + Delta-G solvation          =   -3833.899063 eV
 No. of doubly occupied orbitals           =      65
 Molecular weight
  (most abundant/longest-lived isotopes)   =     335.231     amu
 Computer time                             =       1.04     seconds

               Orbital eigenvalues (eV)

 -41.20064 -39.42223 -37.43856 -35.03495 -34.54854 -32.60673 -31.44209 -30.07955
 -29.51001 -29.29892 -26.95944 -26.55728 -25.69462 -25.14267 -22.97516 -22.19523
 -21.32686 -20.65769 -20.50401 -18.82575 -18.17738 -17.26717 -16.75646 -16.47711
 -16.21994 -15.38199 -14.95248 -14.76107 -14.52225 -14.17000 -14.08447 -13.66569
 -13.55206 -13.38782 -13.00984 -12.75496 -12.60789 -12.35875 -12.31600 -12.23598
 -12.05522 -11.84719 -11.70147 -11.61208 -11.40476 -11.33414 -11.26087 -10.97099
 -10.95543 -10.87344 -10.82018 -10.76926 -10.72441 -10.23569 -10.03216  -9.99138
  -9.90027  -9.78805  -9.59150  -8.71551  -8.57240  -8.16911  -6.90902  -5.81616
  -3.15660   2.54001   3.07046   3.35981   3.42162   3.43624   3.80638   4.28181
   4.42859   4.44193   4.52982   4.85322   4.89178   4.99590   5.03197   5.03645
   5.12751   5.22542   5.25223   5.42049   5.44387   5.52544   5.53169   5.59714
   5.62112   5.63471   5.64657   5.68210   5.71895   5.73811   5.83728   5.89560
   5.92628   5.93331   5.98877   6.03064   6.08954   6.18861   6.22083   6.25970
   6.30940   6.37176   6.47077   6.63558   6.69852   6.75918   6.77286   6.92136
   6.93505   7.25314   7.50142   7.65919   7.69322   8.17005   8.19294   9.07088
   9.70896  10.47881  11.31725

          Molecular weight =  335.23amu

           Principal moments of inertia in cm(-1)
          A =    0.025010   B =    0.002997   C =    0.002904

           Principal moments of inertia in units of 10**(-40)*gram-cm**2
          A = 1119.267100   B = 9341.276502   C = 9641.067691

              Net atomic charges, atomic populations, and dipole contributions
                                   calculated with CM2 

         Atom NO.   Type          Charge        No. of electrons
           1         C            -0.144           4.144
           2         C             0.029           3.971
           3         C            -0.156           4.156
           4         N            -0.499           5.499
           5         C             0.040           3.960
           6         C            -0.127           4.127
           7         C            -0.129           4.129
           8         C             0.054           3.946
           9         H             0.101           0.899
          10         C             0.524           3.476
          11         O            -0.546           6.546
          12         N            -0.609           5.609
          13         C             0.103           3.897
          14         C            -0.108           4.108
          15         H             0.084           0.916
          16         C             0.131           3.869
          17         N            -0.593           5.593
          18         C            -0.225           4.225
          19         H             0.076           0.924
          20         C            -0.005           4.005
          21         N            -0.914           5.914
          22         Si            0.910           3.090
          23         H            -0.288           1.288
          24         H            -0.290           1.290
          25         H            -0.280           1.280
          26         C             0.165           3.835
          27         C            -0.092           4.092
          28         C            -0.118           4.118
          29         C             0.117           3.883
          30         H             0.058           0.942
          31         H             0.058           0.942
          32         H             0.053           0.947
          33         H             0.091           0.909
          34         H             0.075           0.925
          35         H             0.055           0.945
          36         H             0.056           0.944
          37         H             0.082           0.918
          38         H             0.051           0.949
          39         H             0.077           0.923
          40         H             0.076           0.924
          41         H             0.079           0.921
          42         H             0.080           0.920
          43         H             0.074           0.926
          44         H             0.076           0.924
          45         H             0.027           0.973
          46         H             0.049           0.951
          47         H             0.254           0.746
          48         H             0.094           0.906
          49         H             0.022           0.978
          50         H             0.063           0.937
          51         H             0.052           0.948
          52         H             0.042           0.958
          53         H             0.073           0.927
          54         H             0.070           0.930

For the charges calculated by CM2:

 Dipole moment (debyes)    X         Y         Z       Total
 from point charges   -14.911   -11.207     9.118    20.762


Note:  The Mulliken population analysis charges presented below were not
used in the solvation calculation but are provided for completeness.
The chosen solvation model uses CM2 partial charges for calculating
solvation energies.

              Net atomic charges, atomic populations, and dipole contributions
                            using Mulliken population analysis

         Atom NO.   Type          Charge        No. of electrons
           1         C            -0.201           4.201
           2         C            -0.078           4.078
           3         C            -0.214           4.214
           4         N            -0.225           5.225
           5         C            -0.087           4.087
           6         C            -0.165           4.165
           7         C            -0.168           4.168
           8         C            -0.057           4.057
           9         H             0.119           0.881
          10         C             0.313           3.687
          11         O            -0.425           6.425
          12         N            -0.341           5.341
          13         C            -0.020           4.020
          14         C            -0.129           4.129
          15         H             0.103           0.897
          16         C             0.004           3.996
          17         N            -0.316           5.316
          18         C            -0.353           4.353
          19         H             0.094           0.906
          20         C            -0.202           4.202
          21         N            -0.561           5.561
          22         Si            0.740           3.260
          23         H            -0.215           1.215
          24         H            -0.216           1.216
          25         H            -0.206           1.206
          26         C             0.039           3.961
          27         C            -0.095           4.095
          28         C            -0.175           4.175
          29         C            -0.006           4.006
          30         H             0.077           0.923
          31         H             0.077           0.923
          32         H             0.072           0.928
          33         H             0.108           0.892
          34         H             0.093           0.907
          35         H             0.074           0.926
          36         H             0.075           0.925
          37         H             0.100           0.900
          38         H             0.070           0.930
          39         H             0.095           0.905
          40         H             0.094           0.906
          41         H             0.098           0.902
          42         H             0.098           0.902
          43         H             0.092           0.908
          44         H             0.094           0.906
          45         H             0.044           0.956
          46         H             0.067           0.933
          47         H             0.064           0.936
          48         H             0.112           0.888
          49         H             0.040           0.960
          50         H             0.082           0.918
          51         H             0.071           0.929
          52         H             0.061           0.939
          53         H             0.091           0.909
          54         H             0.089           0.911

 Dipole moment (debyes)     X         Y         Z       Total
 from point charges    -15.095   -11.060     8.832    20.692
 hybrid contribution     0.671     0.411    -0.798     1.121
 sum                   -14.424   -10.648     8.034    19.647

          Atomic orbital electron populations

   1.21901   0.94631   1.01604   1.01981   1.22584   0.95678   0.96049   0.93490
   1.22129   1.03112   0.94743   1.01453   1.64180   1.00566   1.20276   1.37432
   1.23096   0.97225   0.88459   0.99929   1.22738   0.94218   0.99258   1.00258
   1.22806   0.98994   0.93087   1.01895   1.22649   0.91103   0.97346   0.94624
   0.88077   1.20517   0.78008   0.78605   0.91532   1.90582   1.57692   1.55919
   1.38267   1.49077   1.40605   1.34930   1.09499   1.22557   0.98055   0.92256
   0.89117   1.23081   0.99923   0.94377   0.95547   0.89727   1.21858   0.90296
   0.95916   0.91489   1.45040   1.57915   1.28813   0.99782   1.18965   1.21137
   0.97512   0.97704   0.90588   1.24841   0.99624   0.98433   0.97321   1.69874
   1.47513   1.33264   1.05407   0.86161   0.79252   0.83468   0.77110   1.21526
   1.21583   1.20606   1.21722   0.85564   0.93986   0.94807   1.22443   1.00144
   0.92340   0.94525   1.21567   0.96609   0.99629   0.99691   1.22221   0.97802
   0.93632   0.86897   0.92263   0.92303   0.92764   0.89171   0.90671   0.92604
   0.92483   0.89953   0.93042   0.90462   0.90577   0.90230   0.90164   0.90798
   0.90598   0.95574   0.93267   0.93579   0.88802   0.96024   0.91821   0.92926
   0.93904   0.90866   0.91134

   Number of geometries                                      1
   Number of calculations of the screened coulomb radii      1
   The total number of SCF iterations                       16.
    Note: The number of geometries may not
    correspond to the number of cycles due to rejected geometry changes.

 In the following table subtotal= G_P + SS G_CDS.

  Atom   Chem.  CM2      G_P      Area      Sigma k    SS G_CDS Subtotal   M
 number symbol   chg.    (kcal) (Ang**2)  cal/(Ang**2)  (kcal)   (kcal)  value

   1       C    -0.14    -1.50     8.81      37.16       0.33    -1.17     16
   2       C     0.03     0.37     2.12     -67.71      -0.14     0.23     16
   3       C    -0.16    -2.03     8.94      37.16       0.33    -1.70     16
   4       N    -0.50    -5.79     5.03    -216.80      -1.09    -6.88     16
   5       C     0.04     0.39     5.31      -2.30      -0.01     0.38     16
   6       C    -0.13    -1.05     7.08     -24.46      -0.17    -1.23     16
   7       C    -0.13    -1.32     6.45     -24.77      -0.16    -1.48     16
   8       C     0.05     0.64     3.33     -67.87      -0.23     0.41     16
   9       H     0.10     1.11     6.12     -51.93      -0.32     0.80     16
  10       C     0.52     7.69     4.01     -10.98      -0.04     7.65     16
  11       O    -0.55    -9.59    14.07       5.56       0.08    -9.52     16
  12       N    -0.61    -8.91     2.19    -170.78      -0.37    -9.28     16
  13       C     0.10     1.36     5.33      -2.70      -0.01     1.35     16
  14       C    -0.11    -1.72     3.71     -88.28      -0.33    -2.05     16
  15       H     0.08     1.31     7.93     -51.93      -0.41     0.90     16
  16       C     0.13     2.49     6.76      -2.26      -0.02     2.47     16
  17       N    -0.59   -14.20     3.38    -168.72      -0.57   -14.77     16
  18       C    -0.23    -5.99    10.38     -15.06      -0.16    -6.15     16
  19       H     0.08     1.96     7.85     -52.49      -0.41     1.55     16
  20       C    -0.01    -0.14     5.40     -17.43      -0.09    -0.23     16
  21       N    -0.91   -25.97    10.82      55.49       0.60   -25.37     16
  22       Si    0.91    21.42    29.57    -169.99      -5.03    16.39     16
  23       H    -0.29    -6.80     7.11      56.52       0.40    -6.39     16
  24       H    -0.29    -6.90     7.11      56.52       0.40    -6.50     16
  25       H    -0.28    -6.45     7.11      56.52       0.40    -6.05     16
  26       C     0.17     3.71     5.14      -2.49      -0.01     3.70     16
  27       C    -0.09    -1.61     1.08    -152.38      -0.16    -1.77     16
  28       C    -0.12    -1.98     8.59      37.16       0.32    -1.66     16
  29       C     0.12     1.93     6.24      -3.26      -0.02     1.91     16
  30       H     0.06     0.59     8.14     -51.93      -0.42     0.17     16
  31       H     0.06     0.59     8.14     -51.93      -0.42     0.17     16
  32       H     0.05     0.52     6.39     -51.93      -0.33     0.19     16
  33       H     0.09     1.40     4.80     -51.98      -0.25     1.15     16
  34       H     0.07     1.04     3.69     -51.93      -0.19     0.85     16
  35       H     0.05     0.73     8.14     -51.93      -0.42     0.31     16
  36       H     0.06     0.70     8.14     -51.93      -0.42     0.27     16
  37       H     0.08     0.70     8.14     -51.93      -0.42     0.27     16
  38       H     0.05     0.54     6.91     -51.93      -0.36     0.18     16
  39       H     0.08     0.57     8.14     -51.92      -0.42     0.15     16
  40       H     0.08     0.54     8.14     -51.93      -0.42     0.12     16
  41       H     0.08     0.95     7.43     -51.93      -0.39     0.56     16
  42       H     0.08     0.70     8.14     -51.93      -0.42     0.27     16
  43       H     0.07     0.95     7.11     -51.93      -0.37     0.58     16
  44       H     0.08     0.86     6.60     -51.93      -0.34     0.52     16
  45       H     0.03     0.49     7.18     -51.93      -0.37     0.12     16
  46       H     0.05     0.89     8.14     -51.93      -0.42     0.47     16
  47       H     0.25     7.04     8.31     -40.82      -0.34     6.70     16
  48       H     0.09     2.40     6.11     -51.93      -0.32     2.09     16
  49       H     0.02     0.52     7.16     -51.93      -0.37     0.15     16
  50       H     0.06     1.17     8.14     -51.93      -0.42     0.74     16
  51       H     0.05     0.87     8.14     -51.93      -0.42     0.45     16
  52       H     0.04     0.65     8.14     -51.93      -0.42     0.22     16
  53       H     0.07     1.24     7.63     -51.93      -0.40     0.85     16
  54       H     0.07     1.22     7.11     -51.93      -0.37     0.85     16

 LS Contribution                 391.05      15.07       5.89     5.89

 Total:         -1.00   -29.71   391.05                -10.48   -40.18

 By element:

 Atomic #  1  Polarization:   12.11  SS G_CDS:  -9.40  Total:     2.70 kcal
 Atomic #  6  Polarization:    1.23  SS G_CDS:  -0.58  Total:     0.65 kcal
 Atomic #  7  Polarization:  -54.87  SS G_CDS:  -1.43  Total:   -56.31 kcal
 Atomic #  8  Polarization:   -9.59  SS G_CDS:   0.08  Total:    -9.52 kcal
 Atomic # 14  Polarization:   21.42  SS G_CDS:  -5.03  Total:    16.39 kcal
 Total LS contribution                           5.89  Total:     5.89 kcal

 Total:                      -29.71            -10.48           -40.18 kcal

   The number of atoms in the molecule is     54
   The average number of expansion shells was   16.00
   The maximum number of expansion shells was     16
   The minimum number of expansion shells was     16


 **** NOTA BENE ****
 This is the net solvation energy for this exact molecular structure 
 (nuclear and electronic)!  The standard-state solvation energy should be 
 obtained as the difference between the heat of formation plus delta-G solvation
 for the relaxed solvated system and that for the relaxed gas-phase system.

                                                                                 
 ZINC001091664466.mol2 54                                                        

 1SCF run

    This is a breakdown of the solvation energy calculated
    without geometric relaxation in solution:

 (1)  E-EN(sol) electronic-nuclear energy of solute                 60.674 kcal
 (2)  G-P(sol) polarization free energy of solvation               -29.708 kcal
 (3)  G-ENP(sol) elect.-nuc.-pol. free energy of system             30.966 kcal
 (4)  G-CDS(sol) cavity-dispersion-solvent structure free energy   -10.477 kcal
 (5)  G-P-CDS(sol) = G-P(sol) + G-CDS(sol) = (2) + (4)             -40.185 kcal
 (6)  G-S(sol) free energy of system = (1) + (5)                    20.489 kcal

     1SCF WAS SPECIFIED, SO GEOMETRY OPTIMIZATION WAS NOT USED

 Total computer time =       1.05 seconds