Default is to use a total of 4 processors: 4 via shared-memory 1 via Linda Entering Link 1 = C:\G09W\l1.exe PID= 1828. Copyright (c) 1988,1990,1992,1993,1995,1998,2003,2009,2013, 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 D.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, 2013. ****************************************** Gaussian 09: EM64W-G09RevD.01 13-Apr-2013 14-Nov-2013 ****************************************** %chk=\\ic.ac.uk\homes\js4211\Year 3\Labs\Inorg1\JS_BH3_FREQ.chk Default route: MaxDisk=10GB ---------------------------------------------------------------------- # freq b3lyp/6-31g(d,p) pop=nbo geom=connectivity int=ultrafine scf=co nver=9 ---------------------------------------------------------------------- 1/10=4,30=1,38=1,57=2/1,3; 2/12=2,17=6,18=5,40=1/2; 3/5=1,6=6,7=101,11=2,16=1,25=1,30=1,71=2,74=-5,75=-5,140=1/1,2,3; 4//1; 5/5=2,6=9,38=5,98=1/2; 8/6=4,10=90,11=11/1; 11/6=1,8=1,9=11,15=111,16=1/1,2,10; 10/6=1/2; 6/7=2,8=2,9=2,10=2,18=1,28=1,40=1/1,7; 7/8=1,10=1,25=1/1,2,3,16; 1/10=4,30=1/3; 99//99; -------- BH3_Freq -------- Symbolic Z-matrix: Charge = 0 Multiplicity = 1 B 0. 0. 0. H 0. 1.19232 0. H -1.03258 -0.59616 0. H 1.03258 -0.59616 0. GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Berny optimization. Initialization pass. Trust Radius=3.00D-01 FncErr=1.00D-07 GrdErr=1.00D-07 Number of steps in this run= 2 maximum allowed number of steps= 2. GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Input orientation: --------------------------------------------------------------------- Center Atomic Atomic Coordinates (Angstroms) Number Number Type X Y Z --------------------------------------------------------------------- 1 5 0 0.000000 0.000000 0.000000 2 1 0 0.000000 1.192320 0.000000 3 1 0 -1.032580 -0.596160 0.000000 4 1 0 1.032580 -0.596160 0.000000 --------------------------------------------------------------------- Distance matrix (angstroms): 1 2 3 4 1 B 0.000000 2 H 1.192320 0.000000 3 H 1.192321 2.065159 0.000000 4 H 1.192321 2.065159 2.065160 0.000000 Stoichiometry BH3 Framework group D3H[O(B),3C2(H)] Deg. of freedom 1 Full point group D3H NOp 12 Largest Abelian subgroup C2V NOp 4 Largest concise Abelian subgroup C2 NOp 2 Standard orientation: --------------------------------------------------------------------- Center Atomic Atomic Coordinates (Angstroms) Number Number Type X Y Z --------------------------------------------------------------------- 1 5 0 0.000000 0.000000 0.000000 2 1 0 0.000000 1.192320 0.000000 3 1 0 1.032579 -0.596160 0.000000 4 1 0 -1.032579 -0.596160 0.000000 --------------------------------------------------------------------- Rotational constants (GHZ): 235.1554974 235.1554974 117.5777487 Standard basis: 6-31G(d,p) (6D, 7F) There are 15 symmetry adapted cartesian basis functions of A1 symmetry. There are 2 symmetry adapted cartesian basis functions of A2 symmetry. There are 8 symmetry adapted cartesian basis functions of B1 symmetry. There are 5 symmetry adapted cartesian basis functions of B2 symmetry. There are 15 symmetry adapted basis functions of A1 symmetry. There are 2 symmetry adapted basis functions of A2 symmetry. There are 8 symmetry adapted basis functions of B1 symmetry. There are 5 symmetry adapted basis functions of B2 symmetry. 30 basis functions, 49 primitive gaussians, 30 cartesian basis functions 4 alpha electrons 4 beta electrons nuclear repulsion energy 7.4260432940 Hartrees. NAtoms= 4 NActive= 4 NUniq= 2 SFac= 4.00D+00 NAtFMM= 60 NAOKFM=F Big=F Integral buffers will be 131072 words long. Raffenetti 2 integral format. Two-electron integral symmetry is turned on. One-electron integrals computed using PRISM. NBasis= 30 RedAO= T EigKep= 4.19D-02 NBF= 15 2 8 5 NBsUse= 30 1.00D-06 EigRej= -1.00D+00 NBFU= 15 2 8 5 ExpMin= 1.27D-01 ExpMax= 2.07D+03 ExpMxC= 3.11D+02 IAcc=3 IRadAn= 5 AccDes= 0.00D+00 Harris functional with IExCor= 402 and IRadAn= 5 diagonalized for initial guess. HarFok: IExCor= 402 AccDes= 0.00D+00 IRadAn= 5 IDoV= 1 UseB2=F ITyADJ=14 ICtDFT= 3500011 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 wScrn= 0.000000 ICntrl= 500 IOpCl= 0 I1Cent= 200000004 NGrid= 0 NMat0= 1 NMatS0= 1 NMatT0= 0 NMatD0= 1 NMtDS0= 0 NMtDT0= 0 Petite list used in FoFCou. Initial guess orbital symmetries: Occupied (A1') (A1') (E') (E') Virtual (A2") (A1') (E') (E') (E') (E') (A2") (A1') (E') (E') (A1') (E") (E") (A1') (E') (E') (A2') (A2") (E") (E") (E') (E') (A1') (E') (E') (A1') The electronic state of the initial guess is 1-A1'. Keep R1 ints in memory in symmetry-blocked form, NReq=994431. Requested convergence on RMS density matrix=1.00D-09 within 128 cycles. Requested convergence on MAX density matrix=1.00D-07. Requested convergence on energy=1.00D-07. No special actions if energy rises. Integral accuracy reduced to 1.0D-05 until final iterations. Initial convergence to 1.0D-05 achieved. Increase integral accuracy. SCF Done: E(RB3LYP) = -26.6153236416 A.U. after 8 cycles NFock= 8 Conv=0.87D-09 -V/T= 2.0113 DoSCS=F DFT=T ScalE2(SS,OS)= 1.000000 1.000000 Range of M.O.s used for correlation: 1 30 NBasis= 30 NAE= 4 NBE= 4 NFC= 0 NFV= 0 NROrb= 30 NOA= 4 NOB= 4 NVA= 26 NVB= 26 Symmetrizing basis deriv contribution to polar: IMax=3 JMax=2 DiffMx= 0.00D+00 G2DrvN: will do 5 centers at a time, making 1 passes. Calling FoFCou, ICntrl= 3107 FMM=F I1Cent= 0 AccDes= 0.00D+00. End of G2Drv F.D. properties file 721 does not exist. End of G2Drv F.D. properties file 722 does not exist. End of G2Drv F.D. properties file 788 does not exist. IDoAtm=1111 Differentiating once with respect to electric field. with respect to dipole field. Differentiating once with respect to nuclear coordinates. Keep R1 ints in memory in symmetry-blocked form, NReq=971156. There are 9 degrees of freedom in the 1st order CPHF. IDoFFX=4 NUNeed= 9. 9 vectors produced by pass 0 Test12= 1.16D-15 1.11D-08 XBig12= 8.58D+00 2.15D+00. AX will form 9 AO Fock derivatives at one time. 9 vectors produced by pass 1 Test12= 1.16D-15 1.11D-08 XBig12= 6.51D-02 1.44D-01. 9 vectors produced by pass 2 Test12= 1.16D-15 1.11D-08 XBig12= 9.82D-05 4.88D-03. 8 vectors produced by pass 3 Test12= 1.16D-15 1.11D-08 XBig12= 9.84D-07 5.51D-04. 7 vectors produced by pass 4 Test12= 1.16D-15 1.11D-08 XBig12= 2.69D-10 7.98D-06. 3 vectors produced by pass 5 Test12= 1.16D-15 1.11D-08 XBig12= 8.64D-14 1.08D-07. InvSVY: IOpt=1 It= 1 EMax= 6.94D-17 Solved reduced A of dimension 45 with 9 vectors. Isotropic polarizability for W= 0.000000 13.31 Bohr**3. End of Minotr F.D. properties file 721 does not exist. End of Minotr F.D. properties file 722 does not exist. End of Minotr F.D. properties file 788 does not exist. ********************************************************************** Population analysis using the SCF density. ********************************************************************** Orbital symmetries: Occupied (A1') (A1') (E') (E') Virtual (A2") (A1') (E') (E') (E') (E') (A2") (A1') (E') (E') (A1') (E") (E") (A1') (E') (E') (A2') (A2") (E") (E") (E') (E') (A1') (E') (E') (A1') The electronic state is 1-A1'. Alpha occ. eigenvalues -- -6.77140 -0.51254 -0.35079 -0.35079 Alpha virt. eigenvalues -- -0.06605 0.16839 0.17929 0.17929 0.38115 Alpha virt. eigenvalues -- 0.38115 0.44413 0.47384 0.90329 0.90329 Alpha virt. eigenvalues -- 0.91301 1.17085 1.17085 1.57603 1.62062 Alpha virt. eigenvalues -- 1.62062 2.00618 2.21192 2.39234 2.39234 Alpha virt. eigenvalues -- 2.55214 2.55214 3.00183 3.24489 3.24489 Alpha virt. eigenvalues -- 3.46267 Condensed to atoms (all electrons): 1 2 3 4 1 B 3.673011 0.410814 0.410814 0.410814 2 H 0.410814 0.671544 -0.025422 -0.025422 3 H 0.410814 -0.025422 0.671544 -0.025422 4 H 0.410814 -0.025422 -0.025422 0.671544 Mulliken charges: 1 1 B 0.094545 2 H -0.031515 3 H -0.031515 4 H -0.031515 Sum of Mulliken charges = 0.00000 Mulliken charges with hydrogens summed into heavy atoms: 1 1 B 0.000000 APT charges: 1 1 B 0.513689 2 H -0.171226 3 H -0.171229 4 H -0.171229 Sum of APT charges = 0.00000 APT charges with hydrogens summed into heavy atoms: 1 1 B 0.000005 Electronic spatial extent (au): = 33.8256 Charge= 0.0000 electrons Dipole moment (field-independent basis, Debye): X= 0.0000 Y= 0.0000 Z= 0.0000 Tot= 0.0000 Quadrupole moment (field-independent basis, Debye-Ang): XX= -9.0171 YY= -9.0171 ZZ= -6.9774 XY= 0.0000 XZ= 0.0000 YZ= 0.0000 Traceless Quadrupole moment (field-independent basis, Debye-Ang): XX= -0.6799 YY= -0.6799 ZZ= 1.3597 XY= 0.0000 XZ= 0.0000 YZ= 0.0000 Octapole moment (field-independent basis, Debye-Ang**2): XXX= 0.0000 YYY= 0.1135 ZZZ= 0.0000 XYY= 0.0000 XXY= -0.1135 XXZ= 0.0000 XZZ= 0.0000 YZZ= 0.0000 YYZ= 0.0000 XYZ= 0.0000 Hexadecapole moment (field-independent basis, Debye-Ang**3): XXXX= -22.5340 YYYY= -22.5340 ZZZZ= -6.6224 XXXY= 0.0000 XXXZ= 0.0000 YYYX= 0.0000 YYYZ= 0.0000 ZZZX= 0.0000 ZZZY= 0.0000 XXYY= -7.5113 XXZZ= -5.0905 YYZZ= -5.0905 XXYZ= 0.0000 YYXZ= 0.0000 ZZXY= 0.0000 N-N= 7.426043294028D+00 E-N=-7.542484259367D+01 KE= 2.631793944343D+01 Symmetry A1 KE= 2.486140349322D+01 Symmetry A2 KE= 5.914731778979D-34 Symmetry B1 KE= 1.456535950213D+00 Symmetry B2 KE= 3.774385306267D-33 Exact polarizability: 15.869 0.000 15.869 0.000 0.000 8.184 Approx polarizability: 18.730 0.000 18.730 0.000 0.000 10.593 ******************************Gaussian NBO Version 3.1****************************** N A T U R A L A T O M I C O R B I T A L A N D N A T U R A L B O N D O R B I T A L A N A L Y S I S ******************************Gaussian NBO Version 3.1****************************** /RESON / : Allow strongly delocalized NBO set Analyzing the SCF density Job title: BH3_Freq Storage needed: 2904 in NPA, 3721 in NBO ( 268435344 available) NATURAL POPULATIONS: Natural atomic orbital occupancies NAO Atom No lang Type(AO) Occupancy Energy ---------------------------------------------------------- 1 B 1 S Cor( 1S) 1.99964 -6.68891 2 B 1 S Val( 2S) 0.98292 -0.10396 3 B 1 S Ryd( 3S) 0.00000 0.54800 4 B 1 S Ryd( 4S) 0.00000 3.40510 5 B 1 px Val( 2p) 0.85872 0.10696 6 B 1 px Ryd( 3p) 0.00000 0.37501 7 B 1 py Val( 2p) 0.85872 0.10696 8 B 1 py Ryd( 3p) 0.00000 0.37501 9 B 1 pz Val( 2p) 0.00000 -0.03568 10 B 1 pz Ryd( 3p) 0.00000 0.41588 11 B 1 dxy Ryd( 3d) 0.00103 2.01322 12 B 1 dxz Ryd( 3d) 0.00000 1.39254 13 B 1 dyz Ryd( 3d) 0.00000 1.39254 14 B 1 dx2y2 Ryd( 3d) 0.00103 2.01322 15 B 1 dz2 Ryd( 3d) 0.00060 1.67360 16 H 2 S Val( 1S) 1.09852 -0.03979 17 H 2 S Ryd( 2S) 0.00012 0.73981 18 H 2 px Ryd( 2p) 0.00001 2.25982 19 H 2 py Ryd( 2p) 0.00045 2.89181 20 H 2 pz Ryd( 2p) 0.00000 2.18371 21 H 3 S Val( 1S) 1.09852 -0.03979 22 H 3 S Ryd( 2S) 0.00012 0.73981 23 H 3 px Ryd( 2p) 0.00034 2.73382 24 H 3 py Ryd( 2p) 0.00012 2.41782 25 H 3 pz Ryd( 2p) 0.00000 2.18371 26 H 4 S Val( 1S) 1.09852 -0.03979 27 H 4 S Ryd( 2S) 0.00012 0.73981 28 H 4 px Ryd( 2p) 0.00034 2.73382 29 H 4 py Ryd( 2p) 0.00012 2.41782 30 H 4 pz Ryd( 2p) 0.00000 2.18371 Summary of Natural Population Analysis: Natural Population Natural ----------------------------------------------- Atom No Charge Core Valence Rydberg Total ----------------------------------------------------------------------- B 1 0.29733 1.99964 2.70037 0.00266 4.70267 H 2 -0.09911 0.00000 1.09852 0.00059 1.09911 H 3 -0.09911 0.00000 1.09852 0.00059 1.09911 H 4 -0.09911 0.00000 1.09852 0.00059 1.09911 ======================================================================= * Total * 0.00000 1.99964 5.99594 0.00442 8.00000 Natural Population -------------------------------------------------------- Core 1.99964 ( 99.9820% of 2) Valence 5.99594 ( 99.9323% of 6) Natural Minimal Basis 7.99558 ( 99.9448% of 8) Natural Rydberg Basis 0.00442 ( 0.0552% of 8) -------------------------------------------------------- Atom No Natural Electron Configuration ---------------------------------------------------------------------------- B 1 [core]2S( 0.98)2p( 1.72) H 2 1S( 1.10) H 3 1S( 1.10) H 4 1S( 1.10) NATURAL BOND ORBITAL ANALYSIS: Occupancies Lewis Structure Low High Occ. ------------------- ----------------- occ occ Cycle Thresh. Lewis Non-Lewis CR BD 3C LP (L) (NL) Dev ============================================================================= 1(1) 1.90 7.99444 0.00556 1 3 0 0 0 0 0.00 ----------------------------------------------------------------------------- Structure accepted: No low occupancy Lewis orbitals -------------------------------------------------------- Core 1.99964 ( 99.982% of 2) Valence Lewis 5.99480 ( 99.913% of 6) ================== ============================ Total Lewis 7.99444 ( 99.930% of 8) ----------------------------------------------------- Valence non-Lewis 0.00514 ( 0.064% of 8) Rydberg non-Lewis 0.00042 ( 0.005% of 8) ================== ============================ Total non-Lewis 0.00556 ( 0.070% of 8) -------------------------------------------------------- (Occupancy) Bond orbital/ Coefficients/ Hybrids --------------------------------------------------------------------------------- 1. (1.99827) BD ( 1) B 1 - H 2 ( 45.04%) 0.6711* B 1 s( 33.31%)p 2.00( 66.59%)d 0.00( 0.10%) 0.0000 0.5772 0.0000 0.0000 0.0000 0.0000 0.8160 0.0000 0.0000 0.0000 0.0000 0.0000 0.0000 -0.0282 -0.0142 ( 54.96%) 0.7413* H 2 s( 99.96%)p 0.00( 0.04%) 0.9998 -0.0001 0.0000 -0.0202 0.0000 2. (1.99827) BD ( 1) B 1 - H 3 ( 45.04%) 0.6711* B 1 s( 33.31%)p 2.00( 66.59%)d 0.00( 0.10%) 0.0000 0.5772 0.0000 0.0000 0.7067 0.0000 -0.4080 0.0000 0.0000 0.0000 -0.0245 0.0000 0.0000 0.0141 -0.0142 ( 54.96%) 0.7413* H 3 s( 99.96%)p 0.00( 0.04%) 0.9998 -0.0001 -0.0175 0.0101 0.0000 3. (1.99827) BD ( 1) B 1 - H 4 ( 45.04%) 0.6711* B 1 s( 33.31%)p 2.00( 66.59%)d 0.00( 0.10%) 0.0000 0.5772 0.0000 0.0000 -0.7067 0.0000 -0.4080 0.0000 0.0000 0.0000 0.0245 0.0000 0.0000 0.0141 -0.0142 ( 54.96%) 0.7413* H 4 s( 99.96%)p 0.00( 0.04%) 0.9998 -0.0001 0.0175 0.0101 0.0000 4. (1.99964) CR ( 1) B 1 s(100.00%) 1.0000 0.0000 0.0000 0.0000 0.0000 0.0000 0.0000 0.0000 0.0000 0.0000 0.0000 0.0000 0.0000 0.0000 0.0000 5. (0.00000) LP*( 1) B 1 s(100.00%) 6. (0.00000) RY*( 1) B 1 s(100.00%) 7. (0.00000) RY*( 2) B 1 s( 0.00%)p 1.00(100.00%) 8. (0.00000) RY*( 3) B 1 s( 0.00%)p 1.00(100.00%) 9. (0.00000) RY*( 4) B 1 s( 0.00%)p 1.00(100.00%) 10. (0.00000) RY*( 5) B 1 s( 0.00%)p 1.00(100.00%) 11. (0.00000) RY*( 6) B 1 s( 0.00%)p 1.00( 0.12%)d99.99( 99.88%) 12. (0.00000) RY*( 7) B 1 s( 0.00%)p 0.00( 0.00%)d 1.00(100.00%) 13. (0.00000) RY*( 8) B 1 s( 0.00%)p 0.00( 0.00%)d 1.00(100.00%) 14. (0.00000) RY*( 9) B 1 s( 0.00%)p 1.00( 0.12%)d99.99( 99.88%) 15. (0.00001) RY*(10) B 1 s( 0.06%)p 0.00( 0.00%)d99.99( 99.94%) 16. (0.00013) RY*( 1) H 2 s( 99.52%)p 0.00( 0.48%) -0.0013 0.9976 0.0000 -0.0690 0.0000 17. (0.00001) RY*( 2) H 2 s( 0.00%)p 1.00(100.00%) 18. (0.00000) RY*( 3) H 2 s( 0.52%)p99.99( 99.48%) 19. (0.00000) RY*( 4) H 2 s( 0.00%)p 1.00(100.00%) 20. (0.00013) RY*( 1) H 3 s( 99.52%)p 0.00( 0.48%) -0.0013 0.9976 -0.0598 0.0345 0.0000 21. (0.00000) RY*( 2) H 3 s( 0.39%)p99.99( 99.61%) 22. (0.00001) RY*( 3) H 3 s( 0.13%)p99.99( 99.87%) 23. (0.00000) RY*( 4) H 3 s( 0.00%)p 1.00(100.00%) 24. (0.00013) RY*( 1) H 4 s( 99.52%)p 0.00( 0.48%) -0.0013 0.9976 0.0598 0.0345 0.0000 25. (0.00000) RY*( 2) H 4 s( 0.39%)p99.99( 99.61%) 26. (0.00001) RY*( 3) H 4 s( 0.13%)p99.99( 99.87%) 27. (0.00000) RY*( 4) H 4 s( 0.00%)p 1.00(100.00%) 28. (0.00171) BD*( 1) B 1 - H 2 ( 54.96%) 0.7413* B 1 s( 33.31%)p 2.00( 66.59%)d 0.00( 0.10%) 0.0000 0.5772 0.0000 0.0000 0.0000 0.0000 0.8160 0.0000 0.0000 0.0000 0.0000 0.0000 0.0000 -0.0282 -0.0142 ( 45.04%) -0.6711* H 2 s( 99.96%)p 0.00( 0.04%) 0.9998 -0.0001 0.0000 -0.0202 0.0000 29. (0.00171) BD*( 1) B 1 - H 3 ( 54.96%) 0.7413* B 1 s( 33.31%)p 2.00( 66.59%)d 0.00( 0.10%) 0.0000 0.5772 0.0000 0.0000 0.7067 0.0000 -0.4080 0.0000 0.0000 0.0000 -0.0245 0.0000 0.0000 0.0141 -0.0142 ( 45.04%) -0.6711* H 3 s( 99.96%)p 0.00( 0.04%) 0.9998 -0.0001 -0.0175 0.0101 0.0000 30. (0.00171) BD*( 1) B 1 - H 4 ( 54.96%) 0.7413* B 1 s( 33.31%)p 2.00( 66.59%)d 0.00( 0.10%) 0.0000 0.5772 0.0000 0.0000 -0.7067 0.0000 -0.4080 0.0000 0.0000 0.0000 0.0245 0.0000 0.0000 0.0141 -0.0142 ( 45.04%) -0.6711* H 4 s( 99.96%)p 0.00( 0.04%) 0.9998 -0.0001 0.0175 0.0101 0.0000 NHO Directionality and "Bond Bending" (deviations from line of nuclear centers) [Thresholds for printing: angular deviation > 1.0 degree] hybrid p-character > 25.0% orbital occupancy > 0.10e Line of Centers Hybrid 1 Hybrid 2 --------------- ------------------- ------------------ NBO Theta Phi Theta Phi Dev Theta Phi Dev ======================================================================================== None exceeding thresholds Second Order Perturbation Theory Analysis of Fock Matrix in NBO Basis Threshold for printing: 0.50 kcal/mol E(2) E(j)-E(i) F(i,j) Donor NBO (i) Acceptor NBO (j) kcal/mol a.u. a.u. =================================================================================================== within unit 1 1. BD ( 1) B 1 - H 2 / 29. BD*( 1) B 1 - H 3 0.55 0.87 0.020 1. BD ( 1) B 1 - H 2 / 30. BD*( 1) B 1 - H 4 0.55 0.87 0.020 2. BD ( 1) B 1 - H 3 / 28. BD*( 1) B 1 - H 2 0.55 0.87 0.020 2. BD ( 1) B 1 - H 3 / 30. BD*( 1) B 1 - H 4 0.55 0.87 0.020 3. BD ( 1) B 1 - H 4 / 28. BD*( 1) B 1 - H 2 0.55 0.87 0.020 3. BD ( 1) B 1 - H 4 / 29. BD*( 1) B 1 - H 3 0.55 0.87 0.020 4. CR ( 1) B 1 / 16. RY*( 1) H 2 0.57 7.45 0.058 4. CR ( 1) B 1 / 20. RY*( 1) H 3 0.57 7.45 0.058 4. CR ( 1) B 1 / 24. RY*( 1) H 4 0.57 7.45 0.058 Natural Bond Orbitals (Summary): Principal Delocalizations NBO Occupancy Energy (geminal,vicinal,remote) ==================================================================================== Molecular unit 1 (H3B) 1. BD ( 1) B 1 - H 2 1.99827 -0.43089 29(g),30(g) 2. BD ( 1) B 1 - H 3 1.99827 -0.43089 28(g),30(g) 3. BD ( 1) B 1 - H 4 1.99827 -0.43089 28(g),29(g) 4. CR ( 1) B 1 1.99964 -6.68893 16(v),20(v),24(v) 5. LP*( 1) B 1 0.00000 0.54800 6. RY*( 1) B 1 0.00000 3.40510 7. RY*( 2) B 1 0.00000 0.37501 8. RY*( 3) B 1 0.00000 0.37501 9. RY*( 4) B 1 0.00000 -0.03568 10. RY*( 5) B 1 0.00000 0.41588 11. RY*( 6) B 1 0.00000 2.00288 12. RY*( 7) B 1 0.00000 1.39254 13. RY*( 8) B 1 0.00000 1.39254 14. RY*( 9) B 1 0.00000 2.00288 15. RY*( 10) B 1 0.00001 1.66961 16. RY*( 1) H 2 0.00013 0.75929 17. RY*( 2) H 2 0.00001 2.25982 18. RY*( 3) H 2 0.00000 2.86991 19. RY*( 4) H 2 0.00000 2.18371 20. RY*( 1) H 3 0.00013 0.75929 21. RY*( 2) H 3 0.00000 2.71791 22. RY*( 3) H 3 0.00001 2.41182 23. RY*( 4) H 3 0.00000 2.18371 24. RY*( 1) H 4 0.00013 0.75929 25. RY*( 2) H 4 0.00000 2.71791 26. RY*( 3) H 4 0.00001 2.41182 27. RY*( 4) H 4 0.00000 2.18371 28. BD*( 1) B 1 - H 2 0.00171 0.43841 29. BD*( 1) B 1 - H 3 0.00171 0.43841 30. BD*( 1) B 1 - H 4 0.00171 0.43841 ------------------------------- Total Lewis 7.99444 ( 99.9305%) Valence non-Lewis 0.00514 ( 0.0643%) Rydberg non-Lewis 0.00042 ( 0.0052%) ------------------------------- Total unit 1 8.00000 (100.0000%) Charge unit 1 0.00000 Calling FoFJK, ICntrl= 100127 FMM=F ISym2X=1 I1Cent= 0 IOpClX= 0 NMat=1 NMatS=1 NMatT=0. Full mass-weighted force constant matrix: Low frequencies --- -11.2361 -11.2272 -5.6980 0.0003 0.0322 0.4463 Low frequencies --- 1162.9779 1213.1412 1213.1414 Diagonal vibrational polarizability: 0.7179876 0.7179558 1.8418336 Harmonic frequencies (cm**-1), IR intensities (KM/Mole), Raman scattering activities (A**4/AMU), depolarization ratios for plane and unpolarized incident light, reduced masses (AMU), force constants (mDyne/A), and normal coordinates: 1 2 3 A2" E' E' Frequencies -- 1162.9779 1213.1412 1213.1414 Red. masses -- 1.2531 1.1072 1.1072 Frc consts -- 0.9986 0.9600 0.9600 IR Inten -- 92.5679 14.0551 14.0546 Atom AN X Y Z X Y Z X Y Z 1 5 0.00 0.00 0.16 -0.10 0.00 0.00 0.00 0.10 0.00 2 1 0.00 0.00 -0.57 0.81 0.00 0.00 0.00 0.08 0.00 3 1 0.00 0.00 -0.57 0.14 0.39 0.00 -0.39 -0.59 0.00 4 1 0.00 0.00 -0.57 0.14 -0.39 0.00 0.39 -0.59 0.00 4 5 6 A1' E' E' Frequencies -- 2582.5697 2715.7052 2715.7062 Red. masses -- 1.0078 1.1273 1.1273 Frc consts -- 3.9604 4.8986 4.8986 IR Inten -- 0.0000 126.3324 126.3264 Atom AN X Y Z X Y Z X Y Z 1 5 0.00 0.00 0.00 0.11 0.00 0.00 0.00 0.11 0.00 2 1 0.00 0.58 0.00 0.02 0.00 0.00 0.00 -0.81 0.00 3 1 0.50 -0.29 0.00 -0.60 0.36 0.00 0.36 -0.19 0.00 4 1 -0.50 -0.29 0.00 -0.60 -0.36 0.00 -0.36 -0.19 0.00 ------------------- - Thermochemistry - ------------------- Temperature 298.150 Kelvin. Pressure 1.00000 Atm. Atom 1 has atomic number 5 and mass 11.00931 Atom 2 has atomic number 1 and mass 1.00783 Atom 3 has atomic number 1 and mass 1.00783 Atom 4 has atomic number 1 and mass 1.00783 Molecular mass: 14.03278 amu. Principal axes and moments of inertia in atomic units: 1 2 3 Eigenvalues -- 7.67467 7.67467 15.34934 X -0.55653 0.83083 0.00000 Y 0.83083 0.55653 0.00000 Z 0.00000 0.00000 1.00000 This molecule is an oblate symmetric top. Rotational symmetry number 6. Rotational temperatures (Kelvin) 11.28567 11.28567 5.64284 Rotational constants (GHZ): 235.15550 235.15550 117.57775 Zero-point vibrational energy 69402.8 (Joules/Mol) 16.58767 (Kcal/Mol) Vibrational temperatures: 1673.26 1745.44 1745.44 3715.74 3907.29 (Kelvin) 3907.29 Zero-point correction= 0.026434 (Hartree/Particle) Thermal correction to Energy= 0.029318 Thermal correction to Enthalpy= 0.030262 Thermal correction to Gibbs Free Energy= 0.008883 Sum of electronic and zero-point Energies= -26.588890 Sum of electronic and thermal Energies= -26.586006 Sum of electronic and thermal Enthalpies= -26.585061 Sum of electronic and thermal Free Energies= -26.606441 E (Thermal) CV S KCal/Mol Cal/Mol-Kelvin Cal/Mol-Kelvin Total 18.397 6.587 44.997 Electronic 0.000 0.000 0.000 Translational 0.889 2.981 33.864 Rotational 0.889 2.981 11.006 Vibrational 16.620 0.626 0.127 Q Log10(Q) Ln(Q) Total Bot 0.820783D-04 -4.085772 -9.407837 Total V=0 0.118320D+09 8.073058 18.588903 Vib (Bot) 0.700258D-12 -12.154742 -27.987328 Vib (V=0) 0.100946D+01 0.004087 0.009412 Electronic 0.100000D+01 0.000000 0.000000 Translational 0.206619D+07 6.315171 14.541218 Rotational 0.567283D+02 1.753800 4.038273 ***** Axes restored to original set ***** ------------------------------------------------------------------- Center Atomic Forces (Hartrees/Bohr) Number Number X Y Z ------------------------------------------------------------------- 1 5 0.000000000 0.000000000 0.000000000 2 1 0.000000000 0.000003333 0.000000000 3 1 -0.000002886 -0.000001667 0.000000000 4 1 0.000002886 -0.000001667 0.000000000 ------------------------------------------------------------------- Cartesian Forces: Max 0.000003333 RMS 0.000001667 GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Berny optimization. Search for a local minimum. Step number 1 out of a maximum of 2 All quantities printed in internal units (Hartrees-Bohrs-Radians) Second derivative matrix not updated -- analytic derivatives used. The second derivative matrix: X1 Y1 Z1 X2 Y2 X1 0.41914 Y1 0.00000 0.41915 Z1 0.00000 0.00000 0.12141 X2 -0.04035 0.00000 0.00000 0.03344 Y2 0.00000 -0.23908 0.00000 0.00000 0.25072 Z2 0.00000 0.00000 -0.04047 0.00000 0.00000 X3 -0.18940 -0.08605 0.00000 0.00346 0.00125 Y3 -0.08605 -0.09003 0.00000 -0.01731 -0.00582 Z3 0.00000 0.00000 -0.04047 0.00000 0.00000 X4 -0.18940 0.08605 0.00000 0.00346 -0.00125 Y4 0.08605 -0.09003 0.00000 0.01731 -0.00582 Z4 0.00000 0.00000 -0.04047 0.00000 0.00000 Z2 X3 Y3 Z3 X4 Z2 0.01349 X3 0.00000 0.19640 Y3 0.00000 0.09409 0.08776 Z3 0.01349 0.00000 0.00000 0.01349 X4 0.00000 -0.01046 0.00928 0.00000 0.19640 Y4 0.00000 -0.00928 0.00809 0.00000 -0.09409 Z4 0.01349 0.00000 0.00000 0.01349 0.00000 Y4 Z4 Y4 0.08776 Z4 0.00000 0.01349 ITU= 0 Eigenvalues --- 0.07544 0.07544 0.13869 0.25438 0.56270 Eigenvalues --- 0.56270 Angle between quadratic step and forces= 0.00 degrees. ClnCor: largest displacement from symmetrization is 1.36D-12 for atom 4. Linear search not attempted -- first point. ClnCor: largest displacement from symmetrization is 1.11D-15 for atom 3. TrRot= 0.000000 0.000000 0.000000 0.000000 0.000000 0.000000 Variable Old X -DE/DX Delta X Delta X Delta X New X (Linear) (Quad) (Total) X1 0.00000 0.00000 0.00000 0.00000 0.00000 0.00000 Y1 0.00000 0.00000 0.00000 0.00000 0.00000 0.00000 Z1 0.00000 0.00000 0.00000 0.00000 0.00000 0.00000 X2 0.00000 0.00000 0.00000 0.00000 0.00000 0.00000 Y2 2.25316 0.00000 0.00000 0.00001 0.00001 2.25317 Z2 0.00000 0.00000 0.00000 0.00000 0.00000 0.00000 X3 -1.95129 0.00000 0.00000 -0.00001 -0.00001 -1.95130 Y3 -1.12658 0.00000 0.00000 -0.00001 -0.00001 -1.12659 Z3 0.00000 0.00000 0.00000 0.00000 0.00000 0.00000 X4 1.95129 0.00000 0.00000 0.00001 0.00001 1.95130 Y4 -1.12658 0.00000 0.00000 -0.00001 -0.00001 -1.12659 Z4 0.00000 0.00000 0.00000 0.00000 0.00000 0.00000 Item Value Threshold Converged? Maximum Force 0.000003 0.000450 YES RMS Force 0.000002 0.000300 YES Maximum Displacement 0.000013 0.001800 YES RMS Displacement 0.000007 0.001200 YES Predicted change in Energy=-6.550735D-11 Optimization completed. -- Stationary point found. GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad 1|1| IMPERIAL COLLEGE-CHWS-261|Freq|RB3LYP|6-31G(d,p)|B1H3|JS4211|14-N ov-2013|0||# freq b3lyp/6-31g(d,p) pop=nbo geom=connectivity int=ultra fine scf=conver=9||BH3_Freq||0,1|B,0.,0.,0.|H,-0.0000002953,1.19232,0. |H,-1.0325792618,-0.5961602557,0.|H,1.0325795571,-0.5961597443,0.||Ver sion=EM64W-G09RevD.01|State=1-A1'|HF=-26.6153236|RMSD=8.731e-010|RMSF= 1.667e-006|ZeroPoint=0.0264341|Thermal=0.029318|Dipole=0.,0.,0.|Dipole Deriv=0.5332529,0.,0.,0.,0.5332333,0.,0.,0.,0.4745804,-0.0877042,0.,0. ,0.,-0.2677759,0.,0.,0.,-0.158199,-0.2227661,-0.077974,0.,-0.0779717,- 0.1327254,0.,0.,0.,-0.1581948,-0.2227662,0.077974,0.,0.0779717,-0.1327 254,0.,0.,0.,-0.1581948|Polar=15.869428,0.,15.8688623,0.,0.,8.1844796| PG=D03H [O(B1),3C2(H1)]|NImag=0||0.41914328,0.,0.41914561,0.,0.,0.1214 1344,-0.04034844,0.00000005,0.,0.03343610,0.00000005,-0.23908189,0.,-0 .00000005,0.25071827,0.,0.,-0.04046998,0.,0.,0.01348679,-0.18939793,-0 .08605409,0.,0.00345621,0.00124583,0.,0.19639769,-0.08605384,-0.090031 87,0.,-0.01730961,-0.00581823,0.,0.09408597,0.08775669,0.,0.,-0.040470 85,0.,0.,0.01349160,0.,0.,0.01348679,-0.18939802,0.08605404,0.,0.00345 620,-0.00124582,0.,-0.01045545,0.00927772,0.,0.19639778,0.08605379,-0. 09003179,0.,0.01730962,-0.00581822,0.,-0.00927772,0.00809342,0.,-0.094 08591,0.08775660,0.,0.,-0.04047085,0.,0.,0.01349160,0.,0.,0.01349160,0 .,0.,0.01348679||0.,0.,0.,0.,-0.00000333,0.,0.00000289,0.00000167,0.,- 0.00000289,0.00000167,0.|||@ "I COULD HAVE DONE IT IN A MUCH MORE COMPLICATED WAY" SAID THE RED QUEEN, IMMENSELY PROUD. -- LEWIS CARROLL Job cpu time: 0 days 0 hours 0 minutes 7.0 seconds. File lengths (MBytes): RWF= 5 Int= 0 D2E= 0 Chk= 1 Scr= 1 Normal termination of Gaussian 09 at Thu Nov 14 14:18:42 2013.