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Direct Reaction of Nitrogen and Lithium up to 75 GPa: Synthesis of the Li3N, LiN, LiN2, and LiN5 Compounds

机译:氮和锂直接反应高达75GPa:Li3N,Lin,Lin2和Lin5化合物的合成

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摘要

A wide variety of Li-N compounds are predicted as stable under pressure and associated with various nitrogen anionic moieties. Accordingly, the LiN5 compound was recently synthesized at 45 GPa by the direct reaction of nitrogen and lithium. In this study, we present an experimental investigation of the Li-N binary phase diagram from ambient pressure up to 73.6 GPa. The samples loaded in the diamond anvil cells were constituted of pure lithium pieces embedded in a much greater quantity of molecular nitrogen and, at incremental pressure steps, were laser-heated to produce the thermodynamically favored solid. The following compounds are observed: Li3N, LiN2, LiN as well as LiN5, and their pressure stability domain is disclosed. Two are synthesized for the first time, namely Cmcm LiN and P6(3)/mmc LiN2. Both are structurally resolved and characterized by X-ray diffraction and Raman spectroscopy measurements. Their high bulk modulus is characteristic of charged N-2 dimers.
机译:在压力下预测各种Li-N化合物并与各种氮阴离子部分相关。 因此,最近通过氮气和锂的直接反应在45GPa下合成Lin5化合物。 在这项研究中,我们介绍了从环境压力到73.6GPa的环境压力的Li-N二元相图的实验研究。 在金刚石砧座中加载的样品由嵌入大量分子氮气中的纯锂块构成,并且在增量压力步骤中,激光加热以产生热力学最有利的固体。 观察到以下化合物:公开了Li3N,Lin2,Lin以及Lin5,并且其压力稳定性结构域。 两个是第一次合成的,即CMCM LIN和P6(3)/ MMC LIN2。 两者都是在结构上解析的,其特征在于X射线衍射和拉曼光谱测量。 它们的高批量模量是带电N-2二聚体的特性。

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