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压力诱导的碱土金属富氮氮化物(XN,X = Ca、Sr和Ba)中的稳定性及聚合氮:第一性原理研究

Pressure-induced stability and polymeric nitrogen in alkaline earth metal N-rich nitrides (XN, X = Ca, Sr and Ba): a first-principles study.

作者信息

Liu Zhipeng, Wei Shuli, Guo Yanhui, Sun Haiyang, Sun Hao, Chang Qiang, Sun Yuping

机构信息

School of Physics and Optoelectronic Engineering, Shandong University of Technology 250049 Zibo China

出版信息

RSC Adv. 2021 May 11;11(28):17222-17228. doi: 10.1039/d1ra01631h. eCollection 2021 May 6.

Abstract

Multi-nitrogen or polynitrogen compounds can be used as potential high energy-density materials, so they have attracted great attention. Nitrogen can exist in alkaline earth metal nitrogen-rich (N-rich) compounds in the form of single or double bonds. In recent years, to explore N-rich compounds which are stable and easy to synthesize has become a new research direction. The N-rich compounds XN (X = Ca, Sr and Ba) have been reported under normal pressure. In order to find other stable crystal structures, we have performed XN (X = Ca, Sr and Ba) exploration under high pressure. We found that SrN has a new 1̄ phase at a pressure of 22 GPa and an infinite nitrogen chain structure, and BaN has a new 2/ phase at 110 GPa, with an N ring network structure. Further, we observed that the infinite nitrogen chain and the N ring network structure contain typical covalent bonds formed by the hybridization of the sp and sp orbitals of N, respectively. It is found that both SrN and BaN are semiconductor materials and the N-2p orbital plays an important role in the stability of the crystal structure for 1̄-SrN and 2/-BaN. Because of the polymerization of nitrogen in the two compounds and their stabilities under high pressure, they can be used as potential high energy-density materials. The research in this paper further promotes the understanding of alkaline earth metal N-rich compounds and provides new information and methods for the synthesis of alkaline earth metal N-rich compounds (XN, X = Ca, Sr and Ba).

摘要

多氮或聚氮化合物可作为潜在的高能量密度材料,因此备受关注。氮能以单键或双键的形式存在于富氮的碱土金属化合物中。近年来,探索稳定且易于合成的富氮化合物已成为一个新的研究方向。常压下已报道了富氮化合物XN(X = Ca、Sr和Ba)。为了寻找其他稳定的晶体结构,我们在高压下对XN(X = Ca、Sr和Ba)进行了探索。我们发现SrN在22 GPa压力下有一个新的1̄相,具有无限氮链结构,而BaN在110 GPa时有一个新的2/相,具有N环网络结构。此外,我们观察到无限氮链和N环网络结构分别包含由N的sp和sp轨道杂化形成的典型共价键。发现SrN和BaN都是半导体材料,并且N - 2p轨道对1̄ - SrN和2/ - BaN晶体结构的稳定性起着重要作用。由于这两种化合物中氮的聚合及其在高压下的稳定性,它们可作为潜在的高能量密度材料。本文的研究进一步促进了对碱土金属富氮化合物的理解,并为碱土金属富氮化合物(XN,X = Ca、Sr和Ba)的合成提供了新的信息和方法。

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