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Double Layer-Interlocked Crystals of Nitrogen-Rich Compounds under Zero-Pressure Conditions

Materials Science 2024-12-04 v2 Soft Condensed Matter Computational Physics

Abstract

Stabilizing nitrogen-rich compound crystals under conventional conditions is a key issue in the development and application of high-energy density materials (HEDMs). Herein, a two-dimensional double-layer interlocked Li4(N5)2 nitrogen-rich compound crystals, in which the two N5 rings are locked to by sharing four Li atoms, was found to maintain structural stability at zero pressure conditions. Dynamics studies reliably confirm crystal stability below 250 K. Furthermore, the stability of Li4(N5)2 crystal mainly arises from the ionic interaction between Li atoms and N5 rings, formed by the charge transfer from Li atoms to N5 rings. This study highlights the feasibility of stabilizing nitrogen-rich compound crystals under conventional conditions, paving the way for atomic level advancements in HEDMs.

Keywords

Cite

@article{arxiv.2412.01497,
  title  = {Double Layer-Interlocked Crystals of Nitrogen-Rich Compounds under Zero-Pressure Conditions},
  author = {Zhen Gong and Baiqiang Liu and Xinrui Yang and Hongbo Jing and Ruiqi Xu and Zhigang Wang},
  journal= {arXiv preprint arXiv:2412.01497},
  year   = {2024}
}

Comments

13 pages, 3 figures