Substituent effects on the S-H bond dissociation energies of thiophenols

被引:54
|
作者
Fu, Y [1 ]
Lin, BL [1 ]
Song, KS [1 ]
Liu, L [1 ]
Guo, QX [1 ]
机构
[1] Univ Sci & Technol China, Dept Chem, Hefei 230026, Peoples R China
关键词
D O I
10.1039/b201003h
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
Density function UB3LYP/6-311++g(d,p) and perturbation theory ROMP2/6-311++g(d,p) calculations were performed on 4-substituted thiophenols and their corresponding radicals. It was found that although UB3LYP and ROMP2 methods underestimated the absolute S-H bond dissociation energies, they could predict almost as good relative S-H bond dissociation energies as a method of a considerably higher level, UCCSD(T)/6-311++(d,p). From the calculation results it was determined that the S-H bond dissociation energies of thiophenols should have a positive correlation with the substituent sigma(p)(+) constants whose slope was ca. 2.5 kcal mol(-1). Such a slope indicated that the experimental S-H bond dissociation energies obtained from a previous solution phase measurement were reasonably accurate for para H, CH3, OCH3, Cl, and NO2 substituted thiophenols. However, the solution phase bond dissociation energy for 4-aminothiophenol was too low, which was found by the calculation in this study to be caused by the hydrogen bonding between the amino group and the solvent molecules. Finally, through the studies on the isodesmic reactions it was found that the substituent effects on the stability of neutral thiophenols had a fair and positive correlation with the substituent sigma(p)(+) constants; the slope was 0.5 kcal mol(-1). On the other hand, the substituent effects on the stability of thiophenol radicals had an excellent and negative correlation with the substituent sigma(p)(+) constants and gave a slope of -1.8 kcal mol(-1). Therefore, the major source of the substituent effects on S-H bond dissociation energies of thiophenols was the stability of the homolysis products, namely, thiophenol radicals.
引用
收藏
页码:1223 / 1230
页数:8
相关论文
共 50 条
  • [41] Infra-red absorption by the S-H bond
    Ellis, JW
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1928, 50 : 2113 - 2118
  • [42] FLUORINE SUBSTITUENT EFFECTS ON METAL CARBENE BOND-DISSOCIATION ENERGIES - IMPLICATIONS FOR METATHESIS REACTIONS OF FLUORINATED OLEFINS
    HALLE, LF
    ARMENTROUT, PB
    BEAUCHAMP, JL
    ORGANOMETALLICS, 1983, 2 (12) : 1829 - 1833
  • [43] Effects of α-ammonium, α-phosphonium, and α-sulfonium groups on C-H bond dissociation energies
    Song, KS
    Liu, L
    Guo, QX
    JOURNAL OF ORGANIC CHEMISTRY, 2003, 68 (11): : 4604 - 4607
  • [44] Substituent effects on the O-H bond dissociation enthalpies in phenolic compounds: agreements and controversies
    Bizarro, MM
    Cabral, BJC
    dos Santos, RMB
    Simoes, JAM
    PURE AND APPLIED CHEMISTRY, 1999, 71 (07) : 1249 - 1256
  • [46] Electrochemically Oxidative Coupling of S-H/S-H for S-S Bond Formation: A Facile Approach to Diacid-disulfides
    Sun, Xue-Jie
    Yang, Shang-Feng
    Wang, Zhi-Tong
    Liang, Sen
    Tian, Hong-Yu
    Yang, Shao-Xiang
    Liu, Yong-Guo
    Sun, Bao-Guo
    Zeng, Cheng-Chu
    CHEMISTRYSELECT, 2020, 5 (15): : 4637 - 4641
  • [47] Borane-catalysed S-H insertion reaction of thiophenols and thiols with α-aryl-α-diazoesters
    Dong, Kexin
    Liu, Xun-Shen
    Wei, Xiaoyan
    Zhao, Yuting
    Liu, Lu
    GREEN SYNTHESIS AND CATALYSIS, 2021, 2 (04): : 385 - 388
  • [48] PCM Study of Bond Dissociation Energies of the S–NO Bond: A DFT Study
    Xiao-Hong Li
    Hong-Ling Cui
    Xian-Zhou Zhang
    Journal of Solution Chemistry, 2013, 42 : 1221 - 1228
  • [49] Determination of S-H Bond Strengths in Dimolybdenum Tetrasulfide Complexes
    Appel, Aaron M.
    Lee, Suh-Jane
    Franz, James A.
    DuBois, Daniel L.
    DuBois, M. Rakowski
    Twamley, Brendan
    ORGANOMETALLICS, 2009, 28 (03) : 749 - 754
  • [50] CATHODE DECOMPOSITION OF THE S-H BOND - ELECTROCHEMICAL REDUCTION OF MERCAPTANES
    BUKHTIAROV, AV
    MIKHEEV, VV
    LEBEDEV, AV
    TOMILOV, AP
    KUZMIN, OV
    ZHURNAL OBSHCHEI KHIMII, 1988, 58 (03): : 684 - 692