首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Synthesis and energetic properties of high-nitrogen substituted bishomocubanes
【24h】

Synthesis and energetic properties of high-nitrogen substituted bishomocubanes

机译:高氮取代的双细菌培养皿的合成及能量性质

获取原文
获取原文并翻译 | 示例
           

摘要

Synthesis, thermodynamic characterization, and energetic properties of three novel high-nitrogen bishomocubane-based compounds DADMBHC, DTetzBHC and DPTrizDMBHC are reported here. These compounds have higher heats of formation (HoFs) and higher energy densities as compared to traditional hydrocarbon fuels. Densities, gas phase HoF and their optimized molecular structure geometries were calculated with various levels of theory. In general, the calculated HoFs of these compounds turn out to be extremely high. Ballistic properties such as vacuum specific impulse and density vacuum specific impulse were calculated using the NASA Chemical Equilibrium and Applications utility. Propulsive properties were compared with liquid bipropellants (RP1) and solid propellants (AP) and explosive properties were compared with RDX. The density specific impulse demonstrated an improvement of 35 s for DADMBHC and DTetzBHC over standard liquid hydrocarbon HTPB, thus showing promise as possible monomers to replace HTPB as a fuel-binder. The density specific impulses of these compounds were also found to be significantly higher than that of RP1, e.g. that of DADMBHC was found to be higher by 84 s, making them potentially good candidates as propellants for use under volume-limited conditions. The detonation properties showed that these compounds have low potential as explosives. TGA, coupled with IR spectroscopy, revealed that DADMBHC and DPTrizDMBHC evaporate readily while DTetzBHC decomposes partially.
机译:此处报道了三种新型的基于高氮双歧杆菌的化合物DADMBHC,DTetzBHC和DPTrizDMBHC的合成,热力学表征和能量性质。与传统的烃类燃料相比,这些化合物具有更高的形成热(HoFs)和更高的能量密度。密度,气相HoF及其优化的分子结构几何形状是通过各种理论水平计算得出的。通常,这些化合物的计算得出的HoF非常高。使用NASA化学平衡和应用程序实用工具计算弹道特性,例如真空比脉冲和密度真空比脉冲。将推进性能与液体双推进剂(RP1)和固体推进剂(AP)进行比较,并将爆炸性与RDX进行比较。密度比脉冲显示DADMBHC和DTetzBHC比标准液态烃HTPB改善了35 s,因此显示出有望作为单体代替HTPB作为燃料粘合剂的希望。还发现这些化合物的密度比冲动显着高于RP1的密度比冲动,例如。发现DADMBHC的推进剂高出84 s,使其成为在体积受限条件下使用的良好推进剂。爆炸特性表明,这些化合物作为爆炸物具有较低的潜力。 TGA结合红外光谱分析表明DADMBHC和DPTrizDMBHC容易蒸发,而DTetzBHC会部分分解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号