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高压下含碳、氮和氧的三元无机化合物

Ternary Inorganic Compounds Containing Carbon, Nitrogen, and Oxygen at High Pressures.

作者信息

Steele Brad A, Oleynik Ivan I

机构信息

Department of Physics, University of South Florida , Tampa, Florida 33620, United States.

出版信息

Inorg Chem. 2017 Nov 6;56(21):13321-13328. doi: 10.1021/acs.inorgchem.7b02102.

Abstract

Ternary CNO compounds are actively researched as novel high energy density and ultrahard materials. Although some synthesis work has been performed at ambient conditions, very little is known about the high pressure chemistry of of CNO compounds. In this work, first-principles variable-composition evolutionary structure prediction calculations are performed with the goal of discovering novel mixed CNO materials at ambient and high pressure conditions. By systematically searching ternary variable composition crystalline materials, the full ternary phase diagram is constructed in the range of pressures from 0 to 100 GPa. The search finds the CNO crystal containing an extended covalent network of C, N, and O atoms, having space group symmetry Cmc2, and stable above just 10 GPa. Several other novel metastable (CO)-(N) crystalline compounds discovered during the search, including two polymorphs of CNO and two polymorphs of CNO crystals, are found to be energetically favorable compared to polymeric carbon monoxide (CO) and nitrogen. Predicted new compounds are characterized by their Raman spectra and equations of state.

摘要

三元CNO化合物作为新型高能量密度和超硬材料正在被积极研究。尽管在环境条件下已经开展了一些合成工作,但对于CNO化合物的高压化学性质却知之甚少。在这项工作中,进行了第一性原理可变组成演化结构预测计算,目的是在环境和高压条件下发现新型混合CNO材料。通过系统地搜索三元可变组成晶体材料,构建了压力范围从0到100 GPa的完整三元相图。搜索发现了一种CNO晶体,它包含由C、N和O原子组成的扩展共价网络,空间群对称是Cmc2,并且仅在10 GPa以上才稳定。在搜索过程中发现的其他几种新型亚稳(CO)-(N)晶体化合物,包括CNO的两种多晶型和CNO晶体的两种多晶型,与聚合一氧化碳(CO)和氮气相比,在能量上更有利。预测的新化合物通过其拉曼光谱和状态方程进行表征。

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