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Synthesis of Highly Energetic PolyNitrogen by Nanosecond-Pulsed Plasma in Liquid Nitrogen

机译:液氮中纳秒脉冲等离子体的高性能多尼腈的合成

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摘要

We report on an experimental study of nanosecond-pulsed plasma treatment of liquid nitrogen demonstrating synthesis of a highly energetic nitrogen material. Raman, FTIR analysis of gas phase products of decomposition, and the material explosion characteristics suggest synthesis of polymeric (amorphous) nitrogen compound which is stable at ambient pressure up to temperatures of about −150 °C. Addition of adsorbents with relatively large characteristic pore sizes (>5 nm) allows marginally improved recovery of the material as determined by temperature-dependent Raman measurements. By analyzing the shock wave propagation resulting from the explosions, we estimated the energy density of the material to be 13.3 ± 3.5 kJ/g, close to the previously predicted value for amorphous polymeric nitrogen.
机译:我们报道了液氮纳秒脉冲等离子体处理的实验研究,证明了高能氮素材料的合成。拉曼,分解气相产物的FTIR分析,材料爆炸特性表明聚合物(无定形)氮化合物的合成,其在环境压力下稳定,高达约-150℃的温度。具有相对较大的特征孔径(> 5nm)的吸附剂允许通过温度依赖的拉曼测量确定的材料恢复略微改善。通过分析由爆炸产生的冲击波传播,我们估计了材料的能量密度为13.3±3.5kJ / g,接近以前预测的非晶态聚合物氮值。

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