3,5-ビス ((ディノメチル) -1,2,4-トリアゾール・モノアニオンとダイアニオンに基づくエネルギー塩:制御可能な製剤,特徴,および高性能
Jiaheng Zhang1, Srinivas Dharavath1, Lauren A Mitchell2
1Department of Chemistry, University of Idaho , Moscow, Idaho 83844-2343, United States.
Journal of the American Chemical Society
|June 9, 2016
まとめ
3,5-ビス (ディニトロメチル) -1,2,4-トリアゾールから派生した新しいエネルギー塩は,優れた爆発特性を示します. これらの新しい化合物は,RDXやHMXのような現在の爆発物と比較して性能が向上しています.
科学分野:
- 材料科学
- 化学について
背景:
- 既存の爆発物の分子改変は 新しいエネルギー材料の開発の鍵となる戦略です
- エネルギー塩の合成は特定の用途のための材料の特性を調整する経路を提供します.
研究 の 目的:
- 3,5-ビス (ディニトロメチル) -1,2,4-トリアゾールモノアニオンとダイアニオンに基づく新しいエネルギー塩の合成と特徴づけ.
- これらの新しいエネルギー塩の構造,密度,爆発特性を評価する.
主な方法:
- 1-ダイアミノ-2,2-ディニトロエチンを前駆体として使用した制御された合成.
- 主要な合成化合物のX線構造の決定
- 爆発速度と圧力を含む結晶密度とエネルギー評価の計算.
主要な成果:
- モノヒドラジニウムとモノアモニウム3,5-ビス (ディニトロメチル) -1,2,4-トリアゾラート塩の合成に成功.
- X線データはアニオン構造を確認し,モノアニオン系における広範な水素結合相互作用を明らかにした.
- 化合物5と6は,計算された高結晶密度 (1.965と1.957gcm−3) を示した.
- エネルギー評価は,RDXとHMXと比較して優れた爆発特性 (vDは9271m s−1,Pは41.0GPaまで) を示した.
結論:
- 合成されたエネルギー塩は有望な性能を示す.
- これらの新しい材料はエネルギー材料の設計の分野で重要な進歩を表しています.
- 研究結果は,これらの化合物が高エネルギー出力を要求するアプリケーションで利用できる可能性を示唆しています.
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