Investigations of Hypervalent Compounds as High-Energy Materials

Abstract

Theoretical considerations, and recent calculations, point to the existence of high energy, long lived, metastable states of some uncommon anions. The experimental evidence for such species, and the characterization of these species, has been incomplete. This study attempts to provide experimental information to confirm those theoretical predictions and to, if possible, characterize these high energy species. A series of anions have been selected for study: NHO-, NH sub 4, CH sub 5, and SiH sub 5. Studies on the first have been completed to very high resolution, the second species has been prepared and evidence for the existence of a high energy form has been obtained, while all attempts to prepare Ch sub 5 were unsuccessful, suggesting the unlikelihood of its existence. Experimental difficulties, prevented a full characterization of SiH sub 5 spectroscopically in the time frame of these studies. HNO- is a bent linear molecule with very uncharacteristic bonding around the central nitrogen. The high resolution IR spectrum in the 2940 through 3150 wavenumber region, detected through atutodetachment, yields the principal rotational moments of inertia, centrifugal distortion constants, spin-rotation couplings, and individual rotational level lifetimes.

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Document Details

Document Type
Technical Report
Publication Date
Jun 01, 1990
Accession Number
ADA225504

Entities

Organizations

  • University of Oregon

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Chemical Reactions
  • Color Centers
  • Crystal Structure
  • Ground State
  • High Energy
  • High Pressure
  • Ion Beams
  • Ion Sources
  • Ionization
  • Laser Beams
  • Lasers
  • Mass Spectra
  • Metastable State
  • Molecular Beams
  • Space Systems
  • Spectra
  • Spectroscopy

Readers

  • Quantum Chemistry
  • Quantum spin resonance or Electron Paramagnetic Resonance spectroscopy.
  • Theoretical Analysis.