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◆ Nature Communications2025-12-13· Materials science

Evidence of a two-dimensional nitrogen crystalline structure on silver surfaces

Xuegao Hu, Haijun Cao, Zhicheng Gao, Hui Zhou, Daiyu Geng, Dong Li, Jisong Gao, Qiaoxiao Zhao, Zhihao Cai, Peng Cheng, Lan Chen, Sheng Meng, Kehui Wu, Baojie Feng

原始摘要(英文原文)· Original abstract
Nitrogen, the most abundant element in Earth’s atmosphere, exists as a diatomic gas under standard temperature and pressure. In the two-dimensional (2D) limit, atomically thin nitrogen, termed nitrogene, has been theoretically predicted to form crystalline materials with various polymorphic configurations, exhibiting diverse chemical and physical properties. However, the synthesis of nitrogene has remained elusive due to the strong nitrogen-nitrogen triple bonds. Here, we report experimental evidence of the formation of nitrogen-based crystalline structures compatible with nitrogene on silver surfaces via ion-beam-assisted epitaxy. Through a combination of scanning tunneling microscopy, angle-resolved photoemission spectroscopy, and first-principles calculations, we demonstrate that the nitrogene-like structure adopts a puckered honeycomb lattice. Notably, our calculations predict a nitrogene band gap of up to 7.5 eV, positioning it as a promising candidate for ultraviolet optoelectronic devices and high-κ dielectric applications. Atomically thin nitrogen crystals, termed nitrogene, have been theoretically predicted, but their synthesis has remained elusive so far. Here, the authors report experimental evidence of the formation of nitrogen-based crystalline structures compatible with nitrogene on Ag(100) surfaces via ion-beam-assisted epitaxy.
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Evidence of a two-dimensional nitrogen crystalline structure on silver surfaces — 科研速览 Science Skim