A Study of Non-Rigid Aromatic Molecules by Supersonic Molecular Jet Spectroscopy: Observation and Spectroscopic Analysis of the Stable Conformations of Various Alkylbenzenes

Abstract

The technique of supersonic molecular jet laser spectroscopy was used to determine the stable conformations of a series of alkylbenzenes. This study demonstrates, for the first time, the sensitivity of molecular jet spectroscopy in determining both the number of stable conformation as well as the geometry of various ethyl, propyl, and butyl substituents relative to the aromatic ring. Different rotamers with low barriers to interconversion, >5 kcal/mol. can be isolated in the supersonic jet expansion. Each observed conformation exhibits its own spectroscopic origin (Si yields So reverse transition) in a two color time-of-flight mass spectrum (TOFMS). The number of stable conformations is then used to determine the minimum energy geometries of the substituent group. Previous identification of individual molecular conformations for such low barriers to interconversion has not been attainable with conventional techniques such as variable-temperature NMR.

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Document Details

Document Type
Technical Report
Publication Date
Jun 01, 1989
Accession Number
ADA209561

Entities

People

  • Elliot R. Bernstein
  • H. V. Secor
  • J. I. Seeman
  • P. J. Breen
  • V. H. Grassian

Organizations

  • Colorado State University

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Chemistry
  • Colorado
  • Energy
  • Geometry
  • Ground State
  • Laser Spectroscopy
  • Lasers
  • Mass Spectra
  • Military Research
  • Molecular Dynamics
  • Molecules
  • Physical Chemistry
  • Physical Properties
  • Spectra
  • Spectroscopy
  • Torsion
  • United States

Fields of Study

  • Chemistry

Readers

  • Combustion and Flow Dynamics.
  • Organic Chemistry
  • Quantum Chemistry

Technology Areas

  • Directed Energy
  • Hypersonics
  • Hypersonics - Hypersonic Flight
  • Hypersonics - Hypersonic Flow