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Stability of high-energy N14H4(2+) ion and the effects of carbon and halogen substitution. | LitMetric

Stability of high-energy N14H4(2+) ion and the effects of carbon and halogen substitution.

J Phys Chem A

Department of Biological Sciences and Department of Physical Sciences, Alabama State University, Montgomery, Alabama 36101, USA.

Published: July 2006

Previous studies of oxygen addition into an N12 cage framework revealed the possibility of stable high-energy density materials (HEDM) resulting from such additions. In the current study, nitrogen addition into N12 is studied as a means of generating stable HEDM. Nitrogen addition into N12 is shown to yield an N14H4(2+) ion, which is examined by theoretical calculations to determine its stability with respect to dissociation. Other variations on this ion are generated by substituting carbon for nitrogen and/or halogens for hydrogen. The cage structures will be compared with respect to stability, and factors that enhance stability will be discussed.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2597225PMC
http://dx.doi.org/10.1021/jp0620318DOI Listing

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