Proposed Proton-Transfer Mechanism for the Initial
Decomposition Steps of BTATz
Version 2 2018-06-28, 13:51Version 2 2018-06-28, 13:51
Version 1 2018-06-28, 13:48Version 1 2018-06-28, 13:48
Posted on 2018-06-28 - 13:51
The
first steps in the gas-phase decomposition mechanism of N3,N6-bis
(1H-tetrazol-5-yl)-1,2,4,5-tetrazine-3,6-diamine, BTATz, anions and the kinetic isotope effects in these processes
were studied using combined multistage mass spectrometry (MS/MS) and
computational techniques. Two major fragmentation processes, the exergonic
loss of nitrogen molecules and the endergonic loss of hydrazoic acid,
were identified. The observation of a primary isotope effect supported
by calculations suggests that the loss of a nitrogen molecule from
the tetrazole ring involves proton migration, either to or within
the terazole ring, as a rate-determining step. The fragmentation of
a hydrazoic acid occurs through an asymmetrical retro-pericyclic reaction.
Calculations show the relevance of these mechanisms to neutral BTATz. Our findings may contribute to the understanding of
decomposition routes in these nitrogen-rich energetic materials and
allow tailoring their reactivity and decomposition pathways for better
control of performance.
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Parvari, Galit; Levi, Moran; Preshel Zlatsin, Maya; Panz, Larisa; Grinstein, Dan; Gottlieb, Levi; et al. (2018). Proposed Proton-Transfer Mechanism for the Initial
Decomposition Steps of BTATz. ACS Publications. Collection. https://doi.org/10.1021/acs.jpca.7b12217Â