Ab initio studies of the C2H2BN potential energy surface

被引:4
|
作者
Xu, HY [1 ]
Saebo, S [1 ]
Pittman, CU [1 ]
机构
[1] Mississippi State Univ, Dept Chem, Mississippi State, MS 39762 USA
来源
关键词
potential energy surface; electronic structure; planar four-coordinated carbon; inverted bonding at carbon; cross-ring p-bonds; fused CNB/CBC ring; cross-ring C-B bonding;
D O I
10.1016/S0166-1280(02)00546-8
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The C2H2BN potential energy surface has been investigated at the MP2-level using the 6-311G** basis set. The potential surface proved to be very complex permitting only partial characterization. Sixty-six stationary points, including 42 energy minima and 24 transition states, were found. The linear (C-infinityv) isomer HCequivalent toC-B(-)equivalent toN(+)-H, 9, was the most stable species identified. The most stable cyclic structure was the non-planar isomer 46, consisting of two fused three-membered rings. Isomer 46 is 12.9 kcal/mol more stable than the planar four-membered HC=C-N=B ring structure, 4. The planar isomer 4 has a short cross-ring CB distance and could be considered as an example of along sought after system with a planar four-coordinated carbon. Planar four-membered ring isomer 5 has shorter CN and CB (and longer CC and BN) lengths than 4 and was only 6.7 kcal/mol less stable. Planar four-membered ring, 7, HC=N-B=H was 18.7 kcal/mol less stable than 4 and it exhibits alternating single and double bonds. The C-2v isomer 18, H2CBCN (CBCN portion linear) was found to be a local minimum, lying 17.3 kcal/mol above the global minimum 9 and is proposed to be observable under proper conditions. Isomer 18 can be represented by the valence bond structure, 3, H2C=B-C=N. In addition to 9, 46, 4, and 18, other candidates for experimental detection are the linear isomers HC=C-N=BH, 10, HCNBCH, 11, and HN=C=C=BH, 12, the acyclic C-2v. structures H2CBNC, 19, H2CCNB, 21, and H2CCBN, 22, and the three-membered ring structures H2NCCB, and H2BCCN ,62. 10, 11, 12, 19, 21, 22, 60 and 62 are less stable than 9 by 17.5, 61.6, 35.2, 27.5, 59.6, 77.5, 73.2 and 78.4 kcal/mol, respectively. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:189 / 209
页数:21
相关论文
共 50 条
  • [31] An improved ab initio potential energy surface for N2-N2
    Jafari, MHK
    Maghari, A
    Shahbazian, S
    CHEMICAL PHYSICS, 2005, 314 (1-3) : 249 - 262
  • [32] Quasiclassical trajectory studies of the dynamics of H2CO on a global ab initio-based potential energy surface
    Rheinecker, JL
    Zhang, X
    Bowman, JM
    MOLECULAR PHYSICS, 2005, 103 (6-8) : 1067 - 1074
  • [33] Reactions C2H2 + OH and C2 + H2O: Ab initio study of the potential energy surfaces
    S. O. Adamson
    Russian Journal of Physical Chemistry B, 2016, 10 : 143 - 152
  • [34] Reactions C2H2 + OH and C2 + H2O: Ab Initio Study of the Potential Energy Surfaces
    Adamson, S. O.
    RUSSIAN JOURNAL OF PHYSICAL CHEMISTRY B, 2016, 10 (01) : 143 - 152
  • [35] Potential energy surface for the C2H4+Cl2→C2H4Cl+Cl reaction:: ab initio molecular orbital study
    Kurosaki, Y
    JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM, 2001, 545 : 225 - 232
  • [36] AB-INITIO POTENTIAL-ENERGY SURFACE AND NEAR-INFRARED SPECTRUM OF THE HE-C2H2 COMPLEX
    MOSZYNSKI, R
    WORMER, PES
    VANDERAVOIRD, A
    JOURNAL OF CHEMICAL PHYSICS, 1995, 102 (21): : 8385 - 8397
  • [37] A new four-dimensional ab initio potential energy surface and rovibrational spectra for the C2H2-Ar complex
    Han, Chaoying
    Pei, Xin
    Zhu, Hua
    Fan, Hongjun
    MOLECULAR PHYSICS, 2020, 118 (14)
  • [38] An ab initio study of the [C2H5O-] potential energy surface and the fragmentation pathways of the ethoxide anion
    Chiu, SW
    Lau, KC
    Li, WK
    JOURNAL OF PHYSICAL CHEMISTRY A, 1999, 103 (30): : 6003 - 6008
  • [39] Ab initio study of the [C2H5O-] potential energy surface and the fragmentation pathways of the ethoxide anion
    Chiu, S.-W.
    Lau, Kai-Chung
    Li, Wai-Kee
    Journal of Physical Chemistry A, 103 (30): : 6003 - 6008
  • [40] Ab initio study of the potential energy surfaces for the reaction C+CH→C2+H
    Boggio-Pasqua, M
    Halvick, P
    Rayez, MT
    Rayez, JC
    Robbe, JM
    JOURNAL OF PHYSICAL CHEMISTRY A, 1998, 102 (11): : 2009 - 2015