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The Ingenious Synthesis of a Nitro-Free Insensitive High-Energy Material Featuring Face-to-Face and Edge-to-Face π-Interactions

机译:具有面对面和边对面π相互作用的无硝基不敏感高能材料的巧妙合成

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摘要

Density, detonation property, and sensitivity may be the most valued features when evaluating an energetic material. By reasoning structure–property relationships, a nitro-free planar energetic material with high nitrogen and oxygen content, 7-hydroxy-difurazano[3,4-b:3′,4′-f]furoxano[3″,4″-d]azepine (4), was synthesized using a unique and facile approach. The structure was fully characterized by IR and NMR spectra, elemental analysis, differential scanning calorimetry (DSC), and single-crystal X-ray diffraction. The expected properties of 4, including a high density of 1.92 g cm−3, high detonation velocity of 8,875 m s−1, and low mechanical sensitivities (impact sensitivity, 21 J and friction sensitivity, >360 N), confirm our strategy. Interestingly, the single-crystal structures of 4 reveal expected face-to-face and edge-to-face π-interactions in the crystal stacking. The remarkable differences in crystal stacking of 4 provide unequivocal evidence that face-to-face π-π interactions contribute significantly to closer assembly and higher density.
机译:评估高能材料时,密度,爆炸特性和灵敏度可能是最有价值的功能。通过合理的结构-性质关系,研究了一种氮和氧含量较高的无硝基平面含能材料,即7-羟基-二呋喃并[3,4-b:3',4'-f]呋喃并[3“,4” -d ] zezepine( 4 )是使用一种独特且简便的方法合成的。该结构通过IR和NMR光谱,元素分析,差示扫描量热法(DSC)和单晶X射线衍射进行了充分表征。 4 的预期特性,包括1.92 g cm −3 的高密度,8,875 ms -1 的高爆速和低机械强度敏感度(冲击敏感度为21 J,摩擦敏感度为> 360 N),证实了我们的策略。有趣的是, 4 的单晶结构揭示了晶体堆叠中预期的面对面和边对面π相互作用。 4 晶体堆叠的显着差异提供了明确的证据,表明面对面的π-π相互作用显着促进了紧密组装和更高的密度。

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