Plašienka Dušan, Martoňák Roman
Department of Experimental Physics, Comenius University, Mlynská Dolina F2, 842 48 Bratislava, Slovakia.
J Chem Phys. 2015 Mar 7;142(9):094505. doi: 10.1063/1.4908161.
The transformation pathway in high-pressure solid nitrogen from N2 molecular state to polymeric cg-N phase was investigated by means of ab initio molecular dynamics and metadynamics simulations. In our study, we observed a transformation mechanism starting from molecular Immm phase that initiated with formation of trans-cis chains. These chains further connected within layers and formed a chain-planar state, which we describe as a mixture of two crystalline structures--trans-cis chain phase and planar phase, both with Pnma symmetry. This mixed state appeared in molecular dynamics performed at 120 GPa and 1500 K and in the metadynamics run at 110 GPa and 1500 K, where the chains continued to reorganize further and eventually formed cg-N. During separate simulations, we also found two new phases--molecular P2(1)/c and two-three-coordinated chain-like Cm. The transformation mechanism heading towards cg-N can be characterized as a progressive polymerization process passing through several intermediate states of variously connected trans-cis chains. In the final stage of the transformation chains in the layered form rearrange collectively and develop new intraplanar as well as interplanar bonds leading to the geometry of cg-N. Chains with alternating trans and cis conformation were found to be the key entity--structural pattern governing the dynamics of the simulated molecular-polymeric transformation in compressed nitrogen.
通过从头算分子动力学和元动力学模拟研究了高压固态氮从N₂分子态到聚合cg - N相的转变途径。在我们的研究中,我们观察到一种从分子I4mm相开始的转变机制,该机制始于反式 - 顺式链的形成。这些链在层内进一步连接并形成链平面状态,我们将其描述为两种晶体结构的混合物——反式 - 顺式链相和平面相,两者均具有Pnma对称性。这种混合状态出现在120 GPa和1500 K下进行的分子动力学模拟以及110 GPa和1500 K下进行的元动力学模拟中,在这些模拟中,链继续进一步重组并最终形成cg - N。在单独的模拟中,我们还发现了两个新相——分子P2(1)/c和二 - 三配位链状Cm。朝向cg - N的转变机制可被表征为一个渐进的聚合过程,该过程经过各种连接的反式 - 顺式链的几个中间状态。在转变的最后阶段,层状形式的链集体重排并形成新的平面内以及平面间键,从而导致cg - N的几何结构。发现具有交替反式和顺式构象的链是关键实体——控制压缩氮中模拟分子 - 聚合物转变动力学的结构模式。