Adducts of trinitropyrazole salts with hydrogen peroxide: new hybrid approach to optimize oxygen balance and stability Full article
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Inorganic Chemistry Communications
ISSN: 1387-7003 , E-ISSN: 1879-0259 |
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| Output data | Year: 2026, Volume: 191, Article number : 117082, Pages count : 11 DOI: 10.1016/j.inoche.2026.117082 | ||||||
| Tags | Peroxosolvates, Trinitropyrazole, Crystal packing, Hydrogen bonding, Peroxomorphism | ||||||
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Abstract:
Five novel peroxosolvates of 3,4,5-trinitropyrazole salts (KTNP•H2O2, KTNP•0.9(H2O2)•0.1(H2O), CsTNP•0.5
(H2O2), CsTNP•H2O2, and GuaTNP•H2O2) were reported. Crystal structures of obtained adducts (and their
starting salts) were determined. In peroxide adducts, metal atoms exhibit irregular coordination polyhedra with
CN numbers ranging from 10 to 12 and are bonded with two or three H2O2 ligands. All obtained hydrogen
peroxide adducts are stabilized by hydrogen bonding networks between peroxide molecules and organic anions.
Potassium derivative KTNP•H2O2 is readily obtained from dilute peroxide solutions and shows high thermal
stability for peroxide adducts and acceptable impact and friction sensitivities. Periodic DFT calculations show
that high stability is a consequence of the significantly higher lattice energy for peroxosolvate than for the
unsolvated salt or hydrate.
Cite:
Medvedev A.G.
, Egorov P.A.
, Prikhodchenko P.V.
, Kiseleva M.A.
, Kalle P.
, Vener M.V.
, Dalinger I.L.
, Khoranyan T.E.
, Pivkina A.N.
, Churakov A.V.
Adducts of trinitropyrazole salts with hydrogen peroxide: new hybrid approach to optimize oxygen balance and stability
Inorganic Chemistry Communications. 2026. V.191. 117082 :1-11. DOI: 10.1016/j.inoche.2026.117082 Scopus OpenAlex
Adducts of trinitropyrazole salts with hydrogen peroxide: new hybrid approach to optimize oxygen balance and stability
Inorganic Chemistry Communications. 2026. V.191. 117082 :1-11. DOI: 10.1016/j.inoche.2026.117082 Scopus OpenAlex
Dates:
| Submitted: | Apr 29, 2026 |
| Accepted: | Jun 18, 2026 |
| Published online: | Jun 21, 2026 |
Identifiers:
| ≡ Scopus: | 2-s2.0-105042580530 |
| ≡ OpenAlex: | W7165480140 |