Open Access
Nature Communications, volume 9, issue 1, publication number 722
Route to high-energy density polymeric nitrogen t-N via He−N compounds
Yinwei Li
1
,
Xiaolei Feng
2, 3
,
Hanyu Liu
4
,
Jian Hao
1
,
S. A. T. Redfern
3, 5
,
Weiwei Lei
6
,
Dan Liu
6
,
Yanming Ma
2, 7
2
4
Geophysical laboratory, Carnegie Institution of Washington, Washington, USA
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Publication type: Journal Article
Publication date: 2018-02-19
Journal:
Nature Communications
scimago Q1
SJR: 4.887
CiteScore: 24.9
Impact factor: 14.7
ISSN: 20411723
PubMed ID:
29459672
General Chemistry
General Biochemistry, Genetics and Molecular Biology
General Physics and Astronomy
Abstract
Polymeric nitrogen, stabilized by compressing pure molecular nitrogen, has yet to be recovered to ambient conditions, precluding its application as a high-energy density material. Here we suggest a route for synthesis of a tetragonal polymeric nitrogen, denoted t-N, via He-N compounds at high pressures. Using first-principles calculations with structure searching, we predict a class of nitrides with stoichiometry HeN4 that are energetically stable (relative to a mixture of solid He and N2) above 8.5 GPa. At high pressure, HeN4 comprises a polymeric channel-like nitrogen framework filled with linearly arranged helium atoms. The nitrogen framework persists to ambient pressure on decompression after removal of helium, forming pure polymeric nitrogen, t-N. t-N is dynamically and mechanically stable at ambient pressure with an estimated energy density of ~11.31 kJ/g, marking it out as a remarkable high-energy density material. This expands the known polymeric forms of nitrogen and indicates a route to its synthesis.Polymeric nitrogen has yet to be recovered to ambient conditions, precluding its practical application as high-energy density material. Here, the authors highlight a possible route to the formation of a tetragonal polymeric nitrogen via helium-nitrogen compounds at high pressures.
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