化学
拉曼光谱
过渡金属
氮气
晶体结构
环境压力
结晶学
金刚石顶砧
二聚体
体积模量
金属
分析化学(期刊)
X射线晶体学
衍射
相变
无机化学
热力学
催化作用
有机化学
光学
物理
作者
Dominique Laniel,Agnès Dewaele,Gastón Garbarino
出处
期刊:Inorganic Chemistry
[American Chemical Society]
日期:2018-03-05
卷期号:57 (11): 6245-6251
被引量:55
标识
DOI:10.1021/acs.inorgchem.7b03272
摘要
The high pressure chemistry of transition metals and nitrogen was recently discovered to be richer than previously thought, due to the synthesis of several transition metal pernitrides. Here, we explore the pressure-temperature domain of iron with an excess of nitrogen up to 91 GPa and 2200 K. Above 72 GPa and 2200 K, the iron pernitride FeN2 is produced in a laser-heated diamond anvil cell. This iron-nitrogen compound is the first with a N/Fe ratio greater than 1. The FeN2 samples were characterized from the maximum observed pressure down to ambient conditions by powder X-ray diffraction and Raman spectroscopy measurements. The crystal structure of FeN2 is resolved to be a Pnnm marcasite structure, analogously to other transition metal pernitrides. On the basis of the lattice's axial ratios and the recorded N-N vibrational modes of FeN2, a bond order of 1.5 for the nitrogen dimer is suggested. The bulk modulus of the iron pernitride is determined to be of K0 = 344(13) GPa, corresponding to an astounding increase of about 208% from pure iron. Upon decompression to ambient conditions, a partial structural phase transition to the theoretically predicted R3̅m FeN2 is detected.
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