Literature DB >> 11666896

Besides N(2), What Is the Most Stable Molecule Composed Only of Nitrogen Atoms?

Mikhail N. Glukhovtsev1, Haijun Jiao, Paul von Ragué Schleyer.   

Abstract

Polynitrogen molecules have been studied systematically at high levels of ab initio and density functional theory (DFT). Besides N(2), the thermodynamically most stable N(n)() molecules, located with the help of a newly developed energy increment system, are all based on pentazole units. The geometric, energetic, and magnetic criteria establish pentazole (2) and its anion (3) to be as aromatic as their isoelectronic analogues, e.g., furan, pyrrole, and the cyclopentadienyl anion. The bond lengths in 2 and 3 are equalized; both have large aromatic stabilization energies (ASE) and also substantial magnetic susceptibility exaltations (Lambda). The C(s)() symmetric azidopentazole (14), a candidate for experimental investigation, is the lowest energy N(8) isomer but is still 196.7 kcal/mol higher in energy than four N(2) molecules. Octaazapentalene (12) with 10 pi electrons also is aromatic. The D(2)(d)() symmetric bispentazole (21) is the lowest energy N(10) minimum but is 260 kcal/mol higher in energy than five N(2) molecules. For strain-free molecules, the average deviation is +/-2.6 kcal/mol between the DFT energies and those based on the increment scheme. The increment scheme also provides estimates of the strain energies of polynitrogen compounds, e.g., tetraazatetrahedrane (8, 48.2 kcal/mol), octaazacubane (11, 192.6 kcal/mol), and N(20) (27, 294.6 kcal/mol), and is useful in searching for new high-energy-high-density materials.

Entities:  

Year:  1996        PMID: 11666896     DOI: 10.1021/ic9606237

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  15 in total

1.  A computer-aided quantum chemical study of the N(15)(-) cluster.

Authors:  Liping Cheng; Qianshu Li; Wenguo Xu; Shaowen Zhang
Journal:  J Mol Model       Date:  2003-03-12       Impact factor: 1.810

2.  Trapping N5 rings and N3 chains on the outer surface of fullerene C60: a theoretical study.

Authors:  Yanhong Liang; Xiaozhen Gao; Nan Li; Xiuhui Zhang
Journal:  J Mol Model       Date:  2015-09-18       Impact factor: 1.810

3.  Stability of carbon-nitrogen cages in fourfold symmetry.

Authors:  Douglas L Strout
Journal:  J Phys Chem A       Date:  2006-03-23       Impact factor: 2.781

4.  Comparative theoretical investigation of the structures, energetics, and stabilities of C7N5H11cages.

Authors:  Jianying Zhang; Xuedong Gong
Journal:  J Mol Model       Date:  2015-03-12       Impact factor: 1.810

5.  Isomer stability of N6C6H6 cages.

Authors:  Douglas L Strout
Journal:  J Phys Chem A       Date:  2006-06-08       Impact factor: 2.781

6.  Stability of high-energy N14H4(2+) ion and the effects of carbon and halogen substitution.

Authors:  Roshawnda Cottrell; Jacqueline Jones; Ami Gilchrist; Danielle Shields; Douglas L Strout
Journal:  J Phys Chem A       Date:  2006-07-20       Impact factor: 2.781

7.  Stabilization of hexazine rings in potassium polynitride at high pressure.

Authors:  Yu Wang; Maxim Bykov; Ilya Chepkasov; Artem Samtsevich; Elena Bykova; Xiao Zhang; Shu-Qing Jiang; Eran Greenberg; Stella Chariton; Vitali B Prakapenka; Artem R Oganov; Alexander F Goncharov
Journal:  Nat Chem       Date:  2022-04-21       Impact factor: 24.427

8.  The stability and decomposition mechanism of the catenated nitrogen compounds.

Authors:  Xiuxiu Zhao; Cai Qi; Rubo Zhang; Shaowen Zhang; Shenghua Li; Siping Pang
Journal:  J Mol Model       Date:  2015-08-08       Impact factor: 1.810

9.  Stabilization of Cylindrical N12 and N18 by Phosphorus Substitution.

Authors:  Douglas L Strout
Journal:  J Chem Theory Comput       Date:  2005-07       Impact factor: 6.006

10.  Metal-ion binding to high-energy N12C4.

Authors:  Kasha Casey; Jessica Thomas; Zamyra Lambert; Douglas L Strout
Journal:  J Phys Chem A       Date:  2009-07-09       Impact factor: 2.781

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