The structure of diethylaminosulfur trifluoride (DAST) - A combined theoretical and nuclear magnetic resonance study

被引:4
|
作者
Klapotke, TM
Schulz, A
机构
[1] Department of Chemistry, University of Glasgow
关键词
ab initio computations; aminosulphur trifluoride; DAST; diethylaminosulphur trifluoride; N-14/F-19; NMR;
D O I
10.1016/S0022-1139(96)03524-5
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The structure of diethylaminosulfur trifluoride (DAST) was computed and fully optimized in C-1 symmetry at the RHF/6-31G** level of theory. In agreement with VSEPR considerations, the isolated molecule adapts the structure of a pseudo trigonal bipyramid (psi-tbp) with one fluorine atom, the nitrogen atom and the lone pair in the equatorial position; the other two fluorine atoms are in the axial positions. In agreement with earlier work by other authors a psi-tbp structure was also postulated for the DAST molecule dissolved in non-polar solvents from temperature-dependent solution F-19 NMR spectroscopy. The free activation enthalpy for the interconversion was estimated from experimental data to be Delta G(#) = 8.5 +/- 0.5 kcal mol(-1). In the N-14 NMR spectrum at low temperatures only a significant Line broadening but no splitting of the signals was observed. The molecule (H2N)SF3 was calculated as a model compound for DAST at the same level of theory, and in addition at electron correlated MP2 level. The global minimum (ATM, absolute true minimum) for (H2N)SF3 is also represented by a psi-tbp structure with the nitrogen atom and the lone pair in the equatorial position. In addition, a second true minimum (TM) was found with two fluorine atoms and the lone pair in equatorial positions and the nitrogen and one fluorine atom occupying the axial positions. Three transition states (TS) were found for the interconversion of the model compound (H2N)SF3.
引用
收藏
页码:181 / 183
页数:3
相关论文
共 50 条
  • [42] Application of Nuclear Magnetic Resonance and Hybrid Methods to Structure Determination of Complex Systems
    Prischi, Filippo
    Pastore, Annalisa
    ADVANCED TECHNOLOGIES FOR PROTEIN COMPLEX PRODUCTION AND CHARACTERIZATION, 2016, 896 : 351 - 368
  • [43] Nuclear Magnetic Resonance Structure of the Prohead RNA E-Loop Hairpin
    Harris, Steven
    Schroeder, Susan J.
    BIOCHEMISTRY, 2010, 49 (29) : 5989 - 5997
  • [44] Investigation of structure and mass transport processes in disperse systems by nuclear magnetic resonance
    Buggisch, H
    Hardy, EH
    Heinen, C
    Tillich, J
    RECENT ADVANCES IN FLUID MECHANICS, 2004, : 16 - 21
  • [45] RESEARCH OF A MOLECULAR STRUCTURE ON A NUCLEAR MAGNETIC RESONANCE SPECTRA TRANSFORMED BY PARAMAGNETIC COMPLEXES
    Voronov, V. K.
    IZVESTIYA VUZOV-PRIKLADNAYA KHIMIYA I BIOTEKHNOLOGIYA, 2013, (01): : 22 - 28
  • [46] Nuclear magnetic resonance study of the magnetic line phases in SrCoOx (2.5 ≤ x ≤ 3)
    Hines, W. A.
    Perry, D. M.
    Xie, C. K.
    Budnick, J. I.
    Wells, B. O.
    Dabrowski, B.
    MATERIALS RESEARCH EXPRESS, 2016, 3 (07):
  • [47] Nuclear Magnetic Resonance Solution Structure and Functional Behavior of the Human Proton Channel
    Bayrhuber, Monika
    Maslennikov, Innokentiy
    Kwiatkowski, Witek
    Sobol, Alexander
    Wierschem, Christoph
    Eichmann, Cedric
    Frey, Lukas
    Riek, Roland
    BIOCHEMISTRY, 2019, 58 (39) : 4017 - 4027
  • [48] Investigation of the Effect of Fracturing Fluids on Shale Pore Structure by Nuclear Magnetic Resonance
    Zhu, Xiulan
    Wang, Zhiguo
    You, Yang
    Zhang, Chuang
    Gao, Hui
    Zhang, Nan
    Li, Teng
    Wang, Chen
    Cheng, Zhilin
    MINERALS, 2023, 13 (11)
  • [49] Conformational analysis of N-arachidonylethanolamide (anandamide) using nuclear magnetic resonance and theoretical calculations
    Bonechi, C
    Brizzi, A
    Brizzi, V
    Francioli, M
    Donati, A
    Rossi, C
    MAGNETIC RESONANCE IN CHEMISTRY, 2001, 39 (08) : 432 - +
  • [50] Synthesis of a novel naphthalenone endoperoxide and structural elucidation by nuclear magnetic resonance spectroscopy and theoretical calculation
    Martins, Lucas M. O. S.
    Santos, Juliana O.
    Hoye, Thomas
    Alvarenga, Elson S.
    MAGNETIC RESONANCE IN CHEMISTRY, 2022, 60 (01) : 139 - 147