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Polynitrogen molecules and ions are important building blocks of high energy density compounds (HEDCs). High energy bonds formed at the N sites can be effectively probed by X-ray photoelectron spectroscopy (XPS) at the N K-edge. In this work, with the density functional theory and the ΔKohn-Sham scheme, we simulated the N1s ionic potentials (IPs) of 72 common polynitrogen molecules [tetrazoles, pentazole (NH), diazines, triazines, tetrazines, furazans, oxazoles and oxadiazoles], ions [pentazolate anion (cyclo-N), pentazenium cation (N), ], and molecular (NH⋯NH, HO⋯NH) and ionic (NH⋯N, HO⋯N) pairs, as well as mononitrogen relatives. These constitute a small theoretical database for absolute N1s IPs with an average accuracy of 0.3 eV. To understand the structure-IP relationship within this family, effects of side substituent and bridging groups, local bonding types (amine or imine N), charge and protonation states, and vibronic coupling were analyzed based on selected systems. This study in the gas phase collects inherent chemical shifts of nitrogen in high-energy NN and NC bonds, which provides an essential reference into XPS interpretations of more complex HEDCs in the solid state. We especially highlight the evident N1s chemical shifts induced by protonation for nitrogen in the five-membered ring (NH cyclo-N, 7 eV; NH⋯NH NH⋯N, 3 eV; HO⋯NH HO⋯N, 2 eV), and suggest XPS as a sensitive tool in determining the hydrogen positions in pentanitrogen-based HEDCs.
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http://dx.doi.org/10.1039/d2cp00069e | DOI Listing |
JACS Au
July 2025
School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.
The N-N single bond is inherently intriguing due to its high energy storage capacity, whether in polynitrogen systems or nitramine-based molecules. However, the synthesis of compounds featuring exceptionally weak N-N single bonds is often hindered by their intrinsic high reactivity and instability. Here, we report the design and synthesis of a monocyclic dual -nitramine with an ultralow N-N bond dissociation energy: 2,4-dinitroamino-5-nitro-2,4-dihydro-3-1,2,4-triazol-3-one ().
View Article and Find Full Text PDFMolecules
June 2025
School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.
Compounds containing the pentazolate anion (-N) represent a distinctive group of energetic materials that have received extensive attention in recent years. -N was used as a polynitrogen anion for the syntheses of energetic salts through metathesis reactions. Propamidinium (), 5-amino-4-carbamoyl-1-imidazol-3-ium (), (1-1,2,3-triazol-4-yl)methanaminium (), 5-amino-4-1,2,4-triazol-1-ium (), 5-amino-3-methyl-4-1,2,4-triazol-1-ium (), and amino(pyrimidin-2-yl)methaniminium () pentazolates were obtained with high yields (>80%), and their crystal structures were confirmed through single-crystal X-ray diffraction analyses.
View Article and Find Full Text PDFDalton Trans
January 2025
School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Xiaolingwei 200, Nanjing 210094, China.
As a new type of polynitrogen species that is stable at room temperature, the pentazolate anion (-N) has attracted much attention in the field of high-energy density materials, but its energy and stability are unbalanced. Cocrystallisation can balance their properties to some extent by forming new chemical compositions from existing -N compounds through non-covalent interactions. This article reviews the research progress of -N cocrystals in recent years, including synthetic methods, cocrystals of metal-N compounds, and cocrystals of nonmetallic pentazolate salts.
View Article and Find Full Text PDFPhys Chem Chem Phys
October 2024
State Key Laboratory for Modification of Chemical Fiber and Polymer Materials, Key Lab of Science and Technology of Eco-Textile, Ministry of Education, College of Chemistry and Chemical Engineering, Donghua University, Shanghai 201620, China.
A design strategy has been proposed to utilize structure-driven solution and solid-state fluorescence emission of polynitrogen atoms. The strategy uses benzimidazole as the electron donor and pyridine as the electron acceptor to construct D-A-type cyanopyridine ethylene molecules. Theoretical calculations reveal that compound 1 has energy-close isomers in dilute solutions, with planar conformation in S and S states, reducing molecular motion and thus enhancing radiation efficiency (quantum yield up to 42.
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January 2024
Xi'an Modern Chemistry Research Institute, Xi'an 710065, China.
Numerous theoretical calculations have demonstrated that polynitrogen with an extending polymeric network is an ultrahigh-energy all-nitrogen material. Typical samples, such as cubic gauche polynitrogen (cg-N), have been synthesized, but the thermal performance of polynitrogen has not been unambiguously determined. Herein, macroscopic samples of polynitrogen were synthesized utilizing a coated substrate, and their thermal decomposition behavior was investigated.
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