Entering Link 1 = C:\G09W\l1.exe PID= 4040. Copyright (c) 1988,1990,1992,1993,1995,1998,2003,2009,2011, Gaussian, Inc. All Rights Reserved. This is part of the Gaussian(R) 09 program. It is based on the Gaussian(R) 03 system (copyright 2003, Gaussian, Inc.), the Gaussian(R) 98 system (copyright 1998, Gaussian, Inc.), the Gaussian(R) 94 system (copyright 1995, Gaussian, Inc.), the Gaussian 92(TM) system (copyright 1992, Gaussian, Inc.), the Gaussian 90(TM) system (copyright 1990, Gaussian, Inc.), the Gaussian 88(TM) system (copyright 1988, Gaussian, Inc.), the Gaussian 86(TM) system (copyright 1986, Carnegie Mellon University), and the Gaussian 82(TM) system (copyright 1983, Carnegie Mellon University). Gaussian is a federally registered trademark of Gaussian, Inc. This software contains proprietary and confidential information, including trade secrets, belonging to Gaussian, Inc. 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By using this program, the user acknowledges that Gaussian, Inc. is engaged in the business of creating and licensing software in the field of computational chemistry and represents and warrants to the licensee that it is not a competitor of Gaussian, Inc. and that it will not use this program in any manner prohibited above. --------------------------------------------------------------- Cite this work as: Gaussian 09, Revision C.01, M. J. Frisch, G. W. Trucks, H. B. Schlegel, G. E. Scuseria, M. A. Robb, J. R. Cheeseman, G. Scalmani, V. Barone, B. Mennucci, G. A. Petersson, H. Nakatsuji, M. Caricato, X. Li, H. P. Hratchian, A. F. Izmaylov, J. Bloino, G. Zheng, J. L. Sonnenberg, M. Hada, M. Ehara, K. Toyota, R. Fukuda, J. Hasegawa, M. Ishida, T. Nakajima, Y. Honda, O. Kitao, H. Nakai, T. Vreven, J. A. Montgomery, Jr., J. E. Peralta, F. Ogliaro, M. Bearpark, J. J. Heyd, E. Brothers, K. N. Kudin, V. N. Staroverov, T. Keith, R. Kobayashi, J. Normand, K. Raghavachari, A. Rendell, J. C. Burant, S. S. Iyengar, J. Tomasi, M. Cossi, N. Rega, J. M. Millam, M. Klene, J. E. Knox, J. B. Cross, V. Bakken, C. Adamo, J. Jaramillo, R. Gomperts, R. E. Stratmann, O. Yazyev, A. J. Austin, R. Cammi, C. Pomelli, J. W. Ochterski, R. L. Martin, K. Morokuma, V. G. Zakrzewski, G. A. Voth, P. Salvador, J. J. Dannenberg, S. Dapprich, A. D. Daniels, O. Farkas, J. B. Foresman, J. V. Ortiz, J. Cioslowski, and D. J. Fox, Gaussian, Inc., Wallingford CT, 2010. ****************************************** Gaussian 09: EM64W-G09RevC.01 23-Sep-2011 20-Nov-2012 ****************************************** %chk=\\ic.ac.uk\homes\yl9210\Desktop\COMPUT\BENOPTLYJ.chk ---------------------------------------- # opt b3lyp/6-31g(d,p) geom=connectivity ---------------------------------------- 1/14=-1,18=20,19=15,26=3,38=1,57=2/1,3; 2/9=110,12=2,17=6,18=5,40=1/2; 3/5=1,6=6,7=101,11=2,16=1,25=1,30=1,71=1,74=-5/1,2,3; 4//1; 5/5=2,38=5/2; 6/7=2,8=2,9=2,10=2,28=1/1; 7//1,2,3,16; 1/14=-1,18=20,19=15/3(2); 2/9=110/2; 99//99; 2/9=110/2; 3/5=1,6=6,7=101,11=2,16=1,25=1,30=1,71=1,74=-5/1,2,3; 4/5=5,16=3/1; 5/5=2,38=5/2; 7//1,2,3,16; 1/14=-1,18=20,19=15/3(-5); 2/9=110/2; 6/7=2,8=2,9=2,10=2,19=2,28=1/1; 99/9=1/99; ------------------- Title Card Required ------------------- Charge = 0 Multiplicity = 1 Symbolic Z-Matrix: C -0.09836 -0.96721 0. C 1.2968 -0.96721 0. C 1.99434 0.24054 0. C 1.29668 1.44905 -0.0012 C -0.09814 1.44897 -0.00168 C -0.79574 0.24076 -0.00068 H -0.64812 -1.91953 0.00045 H 1.84631 -1.91973 0.00132 H 3.09402 0.24062 0.00063 H 1.84688 2.40119 -0.00126 H -0.64826 2.40125 -0.00263 H -1.89535 0.24095 -0.00086 GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Berny optimization. Initialization pass. ---------------------------- ! Initial Parameters ! ! (Angstroms and Degrees) ! -------------------------- -------------------------- ! Name Definition Value Derivative Info. ! -------------------------------------------------------------------------------- ! R1 R(1,2) 1.3952 estimate D2E/DX2 ! ! R2 R(1,6) 1.3948 estimate D2E/DX2 ! ! R3 R(1,7) 1.0996 estimate D2E/DX2 ! ! R4 R(2,3) 1.3947 estimate D2E/DX2 ! ! R5 R(2,8) 1.0997 estimate D2E/DX2 ! ! R6 R(3,4) 1.3954 estimate D2E/DX2 ! ! R7 R(3,9) 1.0997 estimate D2E/DX2 ! ! R8 R(4,5) 1.3948 estimate D2E/DX2 ! ! R9 R(4,10) 1.0997 estimate D2E/DX2 ! ! R10 R(5,6) 1.3951 estimate D2E/DX2 ! ! R11 R(5,11) 1.0998 estimate D2E/DX2 ! ! R12 R(6,12) 1.0996 estimate D2E/DX2 ! ! A1 A(2,1,6) 119.9985 estimate D2E/DX2 ! ! A2 A(2,1,7) 119.9972 estimate D2E/DX2 ! ! A3 A(6,1,7) 120.0043 estimate D2E/DX2 ! ! A4 A(1,2,3) 120.0086 estimate D2E/DX2 ! ! A5 A(1,2,8) 119.9808 estimate D2E/DX2 ! ! A6 A(3,2,8) 120.0106 estimate D2E/DX2 ! ! A7 A(2,3,4) 119.9942 estimate D2E/DX2 ! ! A8 A(2,3,9) 120.0128 estimate D2E/DX2 ! ! A9 A(4,3,9) 119.993 estimate D2E/DX2 ! ! A10 A(3,4,5) 119.994 estimate D2E/DX2 ! ! A11 A(3,4,10) 119.9811 estimate D2E/DX2 ! ! A12 A(5,4,10) 120.0249 estimate D2E/DX2 ! ! A13 A(4,5,6) 120.0047 estimate D2E/DX2 ! ! A14 A(4,5,11) 120.0113 estimate D2E/DX2 ! ! A15 A(6,5,11) 119.984 estimate D2E/DX2 ! ! A16 A(1,6,5) 120.0 estimate D2E/DX2 ! ! A17 A(1,6,12) 120.008 estimate D2E/DX2 ! ! A18 A(5,6,12) 119.992 estimate D2E/DX2 ! ! D1 D(6,1,2,3) 0.0323 estimate D2E/DX2 ! ! D2 D(6,1,2,8) 179.9532 estimate D2E/DX2 ! ! D3 D(7,1,2,3) -179.9729 estimate D2E/DX2 ! ! D4 D(7,1,2,8) -0.052 estimate D2E/DX2 ! ! D5 D(2,1,6,5) 0.0149 estimate D2E/DX2 ! ! D6 D(2,1,6,12) 179.9892 estimate D2E/DX2 ! ! D7 D(7,1,6,5) -179.9798 estimate D2E/DX2 ! ! D8 D(7,1,6,12) -0.0056 estimate D2E/DX2 ! ! D9 D(1,2,3,4) -0.0568 estimate D2E/DX2 ! ! D10 D(1,2,3,9) 179.9619 estimate D2E/DX2 ! ! D11 D(8,2,3,4) -179.9777 estimate D2E/DX2 ! ! D12 D(8,2,3,9) 0.041 estimate D2E/DX2 ! ! D13 D(2,3,4,5) 0.0341 estimate D2E/DX2 ! ! D14 D(2,3,4,10) -179.9964 estimate D2E/DX2 ! ! D15 D(9,3,4,5) -179.9846 estimate D2E/DX2 ! ! D16 D(9,3,4,10) -0.0151 estimate D2E/DX2 ! ! D17 D(3,4,5,6) 0.0131 estimate D2E/DX2 ! ! D18 D(3,4,5,11) -179.9995 estimate D2E/DX2 ! ! D19 D(10,4,5,6) -179.9563 estimate D2E/DX2 ! ! D20 D(10,4,5,11) 0.0311 estimate D2E/DX2 ! ! D21 D(4,5,6,1) -0.0376 estimate D2E/DX2 ! ! D22 D(4,5,6,12) 179.9881 estimate D2E/DX2 ! ! D23 D(11,5,6,1) 179.975 estimate D2E/DX2 ! ! D24 D(11,5,6,12) 0.0007 estimate D2E/DX2 ! -------------------------------------------------------------------------------- Trust Radius=3.00D-01 FncErr=1.00D-07 GrdErr=1.00D-06 Number of steps in this run= 64 maximum allowed number of steps= 100. GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Input orientation: --------------------------------------------------------------------- Center Atomic Atomic Coordinates (Angstroms) Number Number Type X Y Z --------------------------------------------------------------------- 1 6 0 -0.098361 -0.967213 0.000000 2 6 0 1.296799 -0.967213 0.000000 3 6 0 1.994337 0.240538 0.000000 4 6 0 1.296683 1.449047 -0.001199 5 6 0 -0.098142 1.448969 -0.001678 6 6 0 -0.795743 0.240763 -0.000682 7 1 0 -0.648120 -1.919530 0.000450 8 1 0 1.846307 -1.919726 0.001315 9 1 0 3.094017 0.240618 0.000634 10 1 0 1.846883 2.401190 -0.001258 11 1 0 -0.648264 2.401250 -0.002631 12 1 0 -1.895347 0.240946 -0.000862 --------------------------------------------------------------------- Distance matrix (angstroms): 1 2 3 4 5 1 C 0.000000 2 C 1.395160 0.000000 3 C 2.416205 1.394712 0.000000 4 C 2.790065 2.416260 1.395427 0.000000 5 C 2.416183 2.789946 2.416356 1.394825 0.000000 6 C 1.394829 2.416183 2.790080 2.416236 1.395138 7 H 1.099610 2.165553 3.412986 3.889675 3.413102 8 H 2.165414 1.099655 2.165330 3.413316 3.889601 9 H 3.413229 2.165375 1.099680 2.165806 3.413209 10 H 3.889745 3.413024 2.165678 1.099680 2.165606 11 H 3.413055 3.889707 3.413506 2.165528 1.099761 12 H 2.165365 3.413128 3.889684 3.412999 2.165471 6 7 8 9 10 6 C 0.000000 7 H 2.165331 0.000000 8 H 3.412938 2.494427 0.000000 9 H 3.889760 4.320860 2.494768 0.000000 10 H 3.413344 4.989355 4.320917 2.494678 0.000000 11 H 2.165516 4.320781 4.989362 4.321228 2.495147 12 H 1.099604 2.494641 4.320704 4.989364 4.320988 11 12 11 H 0.000000 12 H 2.494420 0.000000 Stoichiometry C6H6 Framework group C1[X(C6H6)] Deg. of freedom 30 Full point group C1 NOp 1 Largest Abelian subgroup C1 NOp 1 Largest concise Abelian subgroup C1 NOp 1 Standard orientation: --------------------------------------------------------------------- Center Atomic Atomic Coordinates (Angstroms) Number Number Type X Y Z --------------------------------------------------------------------- 1 6 0 -0.176717 -1.383752 0.000005 2 6 0 1.110106 -0.844719 -0.000364 3 6 0 1.286853 0.538749 0.000194 4 6 0 0.176454 1.383870 -0.000075 5 6 0 -1.110031 0.844894 -0.000185 6 6 0 -1.286660 -0.539018 0.000252 7 1 0 -0.315850 -2.474525 0.000015 8 1 0 1.984957 -1.510960 0.000218 9 1 0 2.301110 0.963694 0.000537 10 1 0 0.316060 2.474652 0.000306 11 1 0 -1.985358 1.510684 -0.000405 12 1 0 -2.300948 -0.963691 0.000364 --------------------------------------------------------------------- Rotational constants (GHZ): 5.6865650 5.6862639 2.8432074 Standard basis: 6-31G(d,p) (6D, 7F) There are 120 symmetry adapted basis functions of A symmetry. Integral buffers will be 131072 words long. Raffenetti 2 integral format. Two-electron integral symmetry is turned on. 120 basis functions, 210 primitive gaussians, 120 cartesian basis functions 21 alpha electrons 21 beta electrons nuclear repulsion energy 203.0307482098 Hartrees. NAtoms= 12 NActive= 12 NUniq= 12 SFac= 1.00D+00 NAtFMM= 60 NAOKFM=F Big=F One-electron integrals computed using PRISM. NBasis= 120 RedAO= T NBF= 120 NBsUse= 120 1.00D-06 NBFU= 120 Harris functional with IExCor= 402 diagonalized for initial guess. ExpMin= 1.61D-01 ExpMax= 3.05D+03 ExpMxC= 4.57D+02 IAcc=1 IRadAn= 1 AccDes= 0.00D+00 HarFok: IExCor= 402 AccDes= 0.00D+00 IRadAn= 1 IDoV= 1 ScaDFX= 1.000000 1.000000 1.000000 1.000000 FoFCou: FMM=F IPFlag= 0 FMFlag= 100000 FMFlg1= 0 NFxFlg= 0 DoJE=T BraDBF=F KetDBF=T FulRan=T Omega= 0.000000 0.000000 1.000000 0.000000 0.000000 ICntrl= 500 IOpCl= 0 NMat0= 1 NMatS0= 1 NMatT0= 0 NMatD0= 1 NMtDS0= 0 NMtDT0= 0 I1Cent= 4 NGrid= 0. Petite list used in FoFCou. Initial guess orbital symmetries: Occupied (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) Virtual (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) (A) The electronic state of the initial guess is 1-A.