Wall clock time and date at job start Mon Mar 30 2020 07:13:35 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 N 2 2 C 1.30828 * 1 3 3 Si 1.86794 * 120.00182 * 2 1 4 4 H 1.48509 * 109.46819 * 239.99871 * 3 2 1 5 5 H 1.48503 * 109.47058 * 359.97438 * 3 2 1 6 6 H 1.48496 * 109.47436 * 120.00165 * 3 2 1 7 7 C 1.39956 * 119.99894 * 179.97438 * 2 1 3 8 8 H 1.08003 * 119.99977 * 163.99326 * 7 2 1 9 9 C 1.41349 * 119.99778 * 343.99233 * 7 2 1 10 10 C 1.41068 * 120.66505 * 335.14159 * 9 7 2 11 11 C 1.38112 * 118.20132 * 180.02562 * 10 9 7 12 12 Cl 1.73608 * 120.28544 * 179.97438 * 11 10 9 13 13 C 1.38755 * 119.42798 * 359.97438 * 11 10 9 14 14 N 1.32039 * 121.31708 * 0.02562 * 13 11 10 15 15 C 1.31599 * 121.97734 * 0.02562 * 14 13 11 16 16 Br 1.89099 * 119.80199 * 179.97438 * 15 14 13 17 17 H 0.96994 * 119.99895 * 5.16961 * 1 2 3 18 18 H 1.08005 * 120.89937 * 0.04192 * 10 9 7 19 19 H 1.07996 * 119.34078 * 179.73061 * 13 11 10 Note: An asterisk (*) indicates this parameter was or will be optimized. Cartesian coordinates (angstroms) NO. Atom X Y Z 1 7 0.0000 0.0000 0.0000 2 6 1.3083 0.0000 0.0000 3 14 2.2423 1.6177 0.0000 4 1 3.0961 1.6962 -1.2126 5 1 1.2773 2.7464 -0.0006 6 1 3.0961 1.6963 1.2124 7 6 2.0080 -1.2121 0.0005 8 1 3.0567 -1.2303 -0.2574 9 6 1.3423 -2.4123 0.3387 10 6 0.1903 -2.3913 1.1526 11 6 -0.4194 -3.5939 1.4517 12 17 -1.8398 -3.6311 2.4492 13 6 0.1130 -4.7721 0.9480 14 7 1.1926 -4.7675 0.1879 15 6 1.8167 -3.6533 -0.1297 16 35 3.3586 -3.7183 -1.2223 17 1 -0.4850 0.8366 -0.0757 18 1 -0.2043 -1.4600 1.5314 19 1 -0.3624 -5.7121 1.1864 RHF calculation, no. of doubly occupied orbitals= 32 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) Si: (AM1): M.J.S.DEWAR, C. JIE, ORGANOMETALLICS, 6, 1486-1490 (1987). Cl: (AM1): M.J.S. DEWAR AND E. G. ZOEBISCH, THEOCHEM, 180, 1 (1988). Br: (AM1): M.J.S. DEWAR AND E. G. ZOEBISCH, THEOCHEM, 180, 1 (1988). 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 ZINC000238509775.mol2 19 1SCF WAS SPECIFIED, SO GEOMETRY OPTIMIZATION WAS NOT USED SCF FIELD WAS ACHIEVED Wall clock time and date at job start Mon Mar 30 2020 07:13:35 Heat of formation + Delta-G solvation = 6.070485 kcal Electronic energy + Delta-G solvation = -10138.740443 eV Core-core repulsion = 7920.583781 eV Total energy + Delta-G solvation = -2218.156662 eV No. of doubly occupied orbitals = 32 Molecular weight (most abundant/longest-lived isotopes) = 260.925 amu Computer time = 0.18 seconds Orbital eigenvalues (eV) -38.58354 -35.71430 -34.42080 -31.07913 -30.86116 -28.54243 -25.86006 -22.13821 -21.41962 -17.74303 -16.07046 -15.38100 -14.94742 -14.34636 -13.22715 -13.05356 -12.10167 -11.80224 -11.63590 -11.38315 -11.29075 -10.96060 -10.59572 -10.09460 -9.70075 -9.62189 -9.20473 -8.49213 -8.35857 -7.67333 -7.14496 -4.83533 2.12219 2.54245 2.68141 2.89780 2.92351 2.99346 3.12403 3.66324 4.25338 5.16062 5.83428 6.20885 6.36333 6.55409 6.77966 7.17524 7.30883 7.48407 7.99804 8.24808 8.32134 9.06709 9.74474 Molecular weight = 260.93amu Principal moments of inertia in cm(-1) A = 0.015932 B = 0.013632 C = 0.007491 Principal moments of inertia in units of 10**(-40)*gram-cm**2 A = 1756.998068 B = 2053.455030 C = 3736.803795 Net atomic charges, atomic populations, and dipole contributions calculated with CM2 Atom NO. Type Charge No. of electrons 1 N -0.773 5.773 2 C 0.073 3.927 3 Si 0.921 3.079 4 H -0.259 1.259 5 H -0.274 1.274 6 H -0.258 1.258 7 C -0.423 4.423 8 H 0.102 0.898 9 C 0.095 3.905 10 C -0.121 4.121 11 C -0.042 4.042 12 Cl -0.104 7.104 13 C -0.026 4.026 14 N -0.426 5.426 15 C 0.002 3.998 16 Br -0.058 7.058 17 H 0.292 0.708 18 H 0.145 0.855 19 H 0.136 0.864 For the charges calculated by CM2: Dipole moment (debyes) X Y Z Total from point charges 2.234 -0.333 0.138 2.263 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 N -0.395 5.395 2 C -0.150 4.150 3 Si 0.744 3.256 4 H -0.183 1.183 5 H -0.199 1.199 6 H -0.182 1.182 7 C -0.451 4.451 8 H 0.120 0.880 9 C 0.087 3.913 10 C -0.148 4.148 11 C -0.072 4.072 12 Cl -0.076 7.076 13 C -0.187 4.187 14 N -0.135 5.135 15 C -0.217 4.217 16 Br 0.025 6.975 17 H 0.103 0.897 18 H 0.162 0.838 19 H 0.153 0.847 Dipole moment (debyes) X Y Z Total from point charges 2.782 -0.980 -0.445 2.983 hybrid contribution -0.634 1.474 0.591 1.710 sum 2.148 0.493 0.146 2.209 Atomic orbital electron populations 1.69723 1.07929 1.30874 1.31013 1.26139 0.94929 1.02192 0.91692 0.86119 0.80117 0.78727 0.80682 1.18284 1.19884 1.18187 1.19885 0.98585 0.89918 1.36690 0.88040 1.18096 0.91246 0.92191 0.89741 1.21662 0.97517 0.96183 0.99478 1.21897 0.90297 0.96841 0.98119 1.98275 1.40874 1.98971 1.69466 1.21562 0.96948 0.95519 1.04719 1.66719 1.06434 1.30235 1.10106 1.22379 0.99588 0.91204 1.08515 1.96346 1.35212 1.98973 1.66967 0.89690 0.83759 0.84663 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 N -0.77 -18.00 10.91 55.55 0.61 -17.39 13 2 C 0.07 1.64 5.20 -17.34 -0.09 1.55 13 3 Si 0.92 16.90 29.59 -169.99 -5.03 11.87 13 4 H -0.26 -4.71 7.11 56.52 0.40 -4.31 13 5 H -0.27 -4.89 7.11 56.52 0.40 -4.49 13 6 H -0.26 -4.70 7.11 56.52 0.40 -4.30 13 7 C -0.42 -10.19 8.49 -37.76 -0.32 -10.51 13 8 H 0.10 2.35 6.88 -52.48 -0.36 1.99 13 9 C 0.09 2.38 5.59 -106.65 -0.60 1.78 13 10 C -0.12 -2.95 8.60 -38.56 -0.33 -3.28 13 11 C -0.04 -0.96 6.33 -39.44 -0.25 -1.21 13 12 Cl -0.10 -1.99 28.98 -51.86 -1.50 -3.49 13 13 C -0.03 -0.59 10.98 -17.27 -0.19 -0.78 13 14 N -0.43 -10.33 10.30 -10.91 -0.11 -10.44 13 15 C 0.00 0.05 7.24 -16.66 -0.12 -0.07 13 16 Br -0.06 -1.22 32.27 -68.01 -2.19 -3.42 13 17 H 0.29 6.14 8.30 -40.82 -0.34 5.80 13 18 H 0.14 3.55 6.23 -52.48 -0.33 3.23 13 19 H 0.14 2.69 8.06 -52.49 -0.42 2.27 13 LS Contribution 215.26 15.07 3.24 3.24 Total: -1.00 -24.82 215.26 -7.13 -31.95 By element: Atomic # 1 Polarization: 0.44 SS G_CDS: -0.25 Total: 0.19 kcal Atomic # 6 Polarization: -10.62 SS G_CDS: -1.90 Total: -12.51 kcal Atomic # 7 Polarization: -28.33 SS G_CDS: 0.49 Total: -27.83 kcal Atomic # 14 Polarization: 16.90 SS G_CDS: -5.03 Total: 11.87 kcal Atomic # 17 Polarization: -1.99 SS G_CDS: -1.50 Total: -3.49 kcal Atomic # 35 Polarization: -1.22 SS G_CDS: -2.19 Total: -3.42 kcal Total LS contribution 3.24 Total: 3.24 kcal Total: -24.82 -7.13 -31.95 kcal The number of atoms in the molecule is 19 The average number of expansion shells was 13.00 The maximum number of expansion shells was 13 The minimum number of expansion shells was 13 **** 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. ZINC000238509775.mol2 19 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 38.024 kcal (2) G-P(sol) polarization free energy of solvation -24.821 kcal (3) G-ENP(sol) elect.-nuc.-pol. free energy of system 13.203 kcal (4) G-CDS(sol) cavity-dispersion-solvent structure free energy -7.133 kcal (5) G-P-CDS(sol) = G-P(sol) + G-CDS(sol) = (2) + (4) -31.954 kcal (6) G-S(sol) free energy of system = (1) + (5) 6.070 kcal 1SCF WAS SPECIFIED, SO GEOMETRY OPTIMIZATION WAS NOT USED Total computer time = 0.18 seconds