• Title of article

    E-2-Benzylidenebenzocycloalkanones. IV. Studies on transmission of substituent effects on 13C NMR chemical shifts of E-2-(X-benzylidene)-1-tetralones, and -benzosuberones. Comparison with the 13C NMR data of chalcones and E-2-(X-benzylidene)-1-indanones

  • Author/Authors

    Pa´l Perje´si، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2005
  • Pages
    9
  • From page
    81
  • To page
    89
  • Abstract
    Single substituent parameter (SSP) and dual substituent parameter (DSP) analyses were applied to study the transmission of substituent effects on selected 13C NMR chemical shifts of the cyclic chalcone analogues, E-2-(40-X-benzylidene)-1-tetralones (2) and E-2-(40-Xbenzylidene)- 1-benzosuberones (3). In order to study how the geometry of the cyclic chalcone analogues affects the transmission of substituent effects similar investigations with the respective chalcones (4) were also performed. The results obtained earlier with the fivemembered analogue E-2-(40-X-benzylidene)-1-indanones (1) were also involved in the comparisons. Geometry optimization of the unsubstituted 1a, 2a, 3a and 4a as well as the substituted 2 and 3 was performed by ab initio quantum chemical calculations. Both SSP and DSP analyses reflected that resonance effects contribute more to the chemical shift of C-a (C2), while inductive effects primarily affect that of C-b (C10) of the enone moiety of all the four series. This latter effect, however, is far not as pronounced as that of the former one. It was found that DSP analysis data (rF and rR values) of transmission of substituent effects on the dC2 data can serve as a measure of choice to study the conformation (planarity) of the investigated enones in the four series. q 2005 Elsevier B.V. All rights reserved.
  • Keywords
    Transmission of substituent effects , 13C NMR , E-2-benzylidene-1-teralones , E-2-benzylidene-1-benzosuberones , Quantum chemical calculations , Conformationalanalysis , Chalcones
  • Journal title
    Journal of Molecular Structure
  • Serial Year
    2005
  • Journal title
    Journal of Molecular Structure
  • Record number

    844680