The Unexpected Stability of Hydrazine Molecules in Hydrous Environment under Pressure

被引:0
作者
姜树清 [1 ]
杨雪 [2 ]
黄晓丽 [3 ]
黄艳萍 [3 ]
李鑫 [1 ]
崔田 [1 ,3 ]
机构
[1] Synergetic Extreme Condition User Facility College of Physics Jilin University
[2] School of Science Changchun Institute of Technology
[3] State Key Laboratory of Superhard Materials College of Physics Jilin University
基金
国家重点研发计划; 中国国家自然科学基金;
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中图分类号
O623.752 [];
学科分类号
070303 ; 081704 ;
摘要
The incomplete decomposition product of metastable hydrazine(N;H;) instead of the energetically favorable ammonia(NH;) upon decompression is one drawback in applications of energetic material oligomeric hydronitrogens.We explore the stabilit.y of hydrazine molecules in hydrazine hydrate(N;H;·H;O) under pressure in diamond anvil cells(DACs) combined with in situ Raman spectroscop.y and s.ynchrotron x-ray diffraction(XRD)measurements.The results show that one NH;branch forms NH;group by hydrogen bonds between hydrazine and water molecules after the sample crystallizes at 3.2 GPa.The strengthening hydrogen bonds cause the torsion of hydrazine molecules and further dominate a phase transition at 7.2 GPa.Surprisingly,the NN single bonds are strengthened with increasing pressure,which keeps the hydrazine molecules stable up to the ultimate pressure of 36 GPa.Furthermore,the main diffraction patterns show continuous shift to higher degrees in the whole pressure range while some weak lines disappear above 8.2 GPa.The present peak-indexing results of the difiraction patterns with Materials Studio show that the phase transition occurs in the same monoclinic crystal system.Upon decompression,all of the hydrazine molecules extract from hydrazine hydrate crystal at 2.3 GPa,which may provide a new way to purify hydrazine from hydrate.
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页码:55 / 58
页数:4
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