Steele Brad A, Oleynik Ivan I
Department of Physics, University of South Florida , 4202 East Fowler Avenue, Tampa, Florida 33612, United States.
J Phys Chem A. 2017 Nov 22;121(46):8955-8961. doi: 10.1021/acs.jpca.7b08974. Epub 2017 Nov 10.
Polynitrogen compounds have attracted great interest due to their potential applications as high energy density materials. Most recently, a rich variety of alkali polynitrogens (RN; R = Li, Na, and Cs) have been predicted to be stable at high pressures and one of them, CsN has been recently synthesized. In this work, various potassium polynitrides are investigated using first-principles crystal structure search methods. Several novel molecular crystals consisting of N chains, N rings, and N rings stable at high pressures are discovered. In addition, an unusual nitrogen-rich metallic crystal with stoichiometry KN consisting of a planar two-dimensional extended network of nitrogen atoms arranged in fused 18 atom rings is found to be stable above 70 GPa. An appreciable electron transfer from K to N atoms is responsible for the appearance of unexpected chemical bonding in these crystals. The thermodynamic stability and high pressure phase diagram is constructed. The electronic and vibrational properties of the layered polynitrogen KN compound are investigated, and the pressure-dependent IR spectrum is obtained to assist in experimental discovery of this new high-nitrogen content material.
多氮化合物因其作为高能量密度材料的潜在应用而备受关注。最近,人们预测多种碱金属多氮化物(RN;R = Li、Na和Cs)在高压下是稳定的,其中之一CsN最近已被合成。在这项工作中,使用第一性原理晶体结构搜索方法对各种钾的多氮化物进行了研究。发现了几种由N链、N环以及在高压下稳定的N环组成的新型分子晶体。此外,还发现一种化学计量比为KN的不寻常富氮金属晶体,它由排列成稠合18原子环的平面二维扩展氮原子网络组成,在70 GPa以上是稳定的。从K到N原子的明显电子转移导致了这些晶体中出现意想不到的化学键。构建了热力学稳定性和高压相图。研究了层状多氮化合物KN的电子和振动性质,并获得了压力依赖的红外光谱,以协助实验发现这种新的高氮含量材料。