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首页> 外文期刊>The Journal of Chemical Physics >Backbone NxH compounds at high pressures
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Backbone NxH compounds at high pressures

机译:高压下的骨干NxH化合物

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Optical and synchrotron x-ray diffraction diamond anvil cell experiments have been combined with first-principles theoretical structure predictions to investigate mixtures of N-2 and H-2 up to 55 GPa. Our experiments show the formation of structurally complex van der Waals compounds [see also D. K. Spaulding et al., Nat. Commun. 5, 5739 (2014)] above 10 GPa. However, we found that these NxH (0.5 {L-End} < x {L-End} < 1.5) compounds transform abruptly to new oligomeric materials through barochemistry above 47 GPa and photochemistry at pressures as low as 10 GPa. These oligomeric compounds can be recovered to ambient pressure at T {L-End} < 130 K, whereas at room temperature, they can be metastable on pressure release down to 3.5 GPa. Extensive theoretical calculations show that such oligomeric materials become thermodynamically more stable in comparison to mixtures of N-2, H-2, and NH3 above approximately 40 GPa. Our results suggest new pathways for synthesis of environmentally benign high energy-density materials. These materials could also exist as alternative planetary ices. (C) 2015 AIP Publishing LLC.
机译:光学和同步X射线衍射金刚石砧室实验已与第一性原理的理论结构预测相结合,以研究N-2和H-2的混合物,最高55 GPa。我们的实验显示出结构复杂的范德华化合物的形成[另请参见D.K. Spaulding等人,Nat。公社5,5739(2014)]高于10 GPa。然而,我们发现这些NxH(0.5 {L-末端}

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