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September 4, 2026
Time to Showcase Your Research: Applications Are Now Open for Student Research Paper Competition 2026
Taking part in the Student Research Paper Competition (SRPC) gives you an opportunity to present your research to experts, receive an independent assessment, and determine the future direction of your work. The competition is open to students graduating in 2026 not only from HSE University but from universities in Russia and abroad. Papers may be submitted in Russian and English, and in some fields also in French, German, and Spanish.
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August 25, 2026
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Cocrystals of [1,2,5]oxadiazolo[3,4-c]cinnoline 5-oxides and 1,5-dioxides: step-by-step development of crystal engineering of energetic materials

CrystEngComm. 2025. Vol. 27. No. 3. P. 386–399.
Baraboshkin N. M., Zelenov V. P., Fedyanin I.V., Samigullina A. I., Klenov M. S.

In this work, the cocrystallization of both benzotrifuroxan (BTF) and [1,2,5]oxadiazolo[3,4-e][1,2,3,4]tetrazine
4,6-dioxide (furazanotetrazine dioxide, FTDO) with [1,2,5]oxadiazolo[3,4-c]cinnoline 5-oxide (FCO),
1,5-dioxide (FCDO) and some of their nitro derivatives was investigated, focusing on the cocrystal structural
features and their detonation performance. First, cocrystallization energies using crystal structure prediction
(CSP) methods, identifying energetically favorable component ratios for BTF and FTDO with cinnoline
oxides, were calculated. Then two novel cocrystals, the BTF–FCDO 4 (1 : 2) and the FTDO–FCDO 3 (1 : 2)
compositions, were prepared and characterized by X-ray diffraction and Hirshfeld surface analysis. The
primary intermolecular interactions in BTF cocrystals include dominant n(NO2 )⋯π(BTF) contacts and
π-stacking motifs, and in FTDO cocrystals, hydrogen-bonded synthons. The calculated energetic
parameters were 7.37 km s−1 and 23.99 GPa for the FTDO (1 : 2) cocrystal, and 7.69 km s−1 and 26.4 GPa
for the BTF (1 : 2) cocrystal. Their cocrystals (1 : 2) with FCDOs exhibited, compared to pure parent
compounds, lower detonation velocities and pressures due to high FCDOs molar content, yet still
outperformed conventional energetic compounds such as 2,4,6-trinitrotoluene (TNT) and 1,3,5-
trinitrobenzene (TNB).

Research target: Chemistry
Language: English
Full text
DOI
Text on another site
Keywords: рентгеноструктурный анализsingle crystal X-ray diffractioncrystal structure predictionинженерия кристалловcrystal engineeringпредсказание кристаллических структур
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