Realizing compounds entirely composed of aromatic hexazine N6 rings with high stability is a long-term challenge. Existing high-pressure synthesized compounds contain a maximum of 5.36% N atoms, forming aromatic N64- rings. We predict that all N atoms contribute to aromatic N64- rings in K4N6, which become stable at 60 GPa and can stably exist up to 600 K at 0 GPa. Furthermore, K and KN3 are suggested as precursors for the synthesis of K4N6. Following this approach, based on the diamond anvil cell, K4N6 with 100% nitrogen atoms forming aromatic hexazine N64- rings is synthesized at 45 GPa after laser heating and identified by synchrotron X-ray diffraction and Raman spectroscopy. Our results bring us closer to achieving aromatic N6 rings at ambient condition.
Zhang et al. (Mon,) studied this question.
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