在B3LYP/6-31++G**水平下,对氧化呋咱单体及二聚体进行了几何构型优化,发现在由单体结合形成二聚体的过程中,子分子的平面构型并没有发生改变。通过振动频率分析结果推测出,分子中形成较大的π-π共轭,对C-H键的振动频率有影响,使得C-H...在B3LYP/6-31++G**水平下,对氧化呋咱单体及二聚体进行了几何构型优化,发现在由单体结合形成二聚体的过程中,子分子的平面构型并没有发生改变。通过振动频率分析结果推测出,分子中形成较大的π-π共轭,对C-H键的振动频率有影响,使得C-H伸缩频率发生了略微的红移,强度也明显增强。分子中原子(atoms in molecular,AIM)理论得出C-H共价键键临界点处电子密度的Laplacian值■2ρ具有负值。而O…H与N…H键临界点处2ρ都是大于零的,表明氧化呋咱二聚体中的O…H与N…H符合一般氢键的拓扑特点。二聚体在C-H键临界点处聚积电子的能力增强。运用渐近修正的SAPT(DFT)方法(symmetry-adapted perturbationtheory employing density functional theory),对氧化呋咱二聚体分子间作用进行能量分割。其中二聚体的静电能分别为-30.10kJ.mol-1和-37.36kJ.mol-1,与总的作用能相当,这也从侧面反映了氧化呋咱二聚体中分子中氢键作用主要由静电能决定。展开更多
This review covers recent advances in the synthesis and energetic performance of nitrogen-rich 1,2,4-oxadiazole-azoles-based energetic materials.These materials comprise of 1,2,4-oxadiazole subunit as a key structural...This review covers recent advances in the synthesis and energetic performance of nitrogen-rich 1,2,4-oxadiazole-azoles-based energetic materials.These materials comprise of 1,2,4-oxadiazole subunit as a key structural motif linked to different nitrogen-rich or nitrogen-oxygen azoles:tetrazole,furazan,furoxan,1,3,4-oxadiazole,pyrazole,and triazole.Particular attention is devoted to the introduction of various energetic groups including nitro,nitramino,azo,azoxy,dinitromethyl,trinitroethyl moieties,and their combination.The physicochemical and available performance parameters including density,decomposition temperature,heat of formation,detonation pressure,detonation velocity,impact sensitivity,and friction sensitivity of typical energetic compounds are also provided and analyzed.Eventually,it was obtained that several screened compounds exhibit superior detonation properties and outstanding insensitivities,which can be classified as a new family of high-performance energetic materials.Additionally,1,2,4-oxadiazole-azoles-based energetic materials still have many thorough works to further exploited and studied,expecting to get very promising insensitive high explosives for practical application and industrialization.展开更多
文摘在B3LYP/6-31++G**水平下,对氧化呋咱单体及二聚体进行了几何构型优化,发现在由单体结合形成二聚体的过程中,子分子的平面构型并没有发生改变。通过振动频率分析结果推测出,分子中形成较大的π-π共轭,对C-H键的振动频率有影响,使得C-H伸缩频率发生了略微的红移,强度也明显增强。分子中原子(atoms in molecular,AIM)理论得出C-H共价键键临界点处电子密度的Laplacian值■2ρ具有负值。而O…H与N…H键临界点处2ρ都是大于零的,表明氧化呋咱二聚体中的O…H与N…H符合一般氢键的拓扑特点。二聚体在C-H键临界点处聚积电子的能力增强。运用渐近修正的SAPT(DFT)方法(symmetry-adapted perturbationtheory employing density functional theory),对氧化呋咱二聚体分子间作用进行能量分割。其中二聚体的静电能分别为-30.10kJ.mol-1和-37.36kJ.mol-1,与总的作用能相当,这也从侧面反映了氧化呋咱二聚体中分子中氢键作用主要由静电能决定。
基金We are thankful to the NSAF(No.U1830134)NSFC(No.21905023 and 22175025)+1 种基金State Key Laboratory of Explosion Science and Technology(No.YBKT21-02)Open Research Fund Program of CAS Key Laboratory of Energy Regulation Materials(No.ORFP2020-01)for their generous financial support.
文摘This review covers recent advances in the synthesis and energetic performance of nitrogen-rich 1,2,4-oxadiazole-azoles-based energetic materials.These materials comprise of 1,2,4-oxadiazole subunit as a key structural motif linked to different nitrogen-rich or nitrogen-oxygen azoles:tetrazole,furazan,furoxan,1,3,4-oxadiazole,pyrazole,and triazole.Particular attention is devoted to the introduction of various energetic groups including nitro,nitramino,azo,azoxy,dinitromethyl,trinitroethyl moieties,and their combination.The physicochemical and available performance parameters including density,decomposition temperature,heat of formation,detonation pressure,detonation velocity,impact sensitivity,and friction sensitivity of typical energetic compounds are also provided and analyzed.Eventually,it was obtained that several screened compounds exhibit superior detonation properties and outstanding insensitivities,which can be classified as a new family of high-performance energetic materials.Additionally,1,2,4-oxadiazole-azoles-based energetic materials still have many thorough works to further exploited and studied,expecting to get very promising insensitive high explosives for practical application and industrialization.