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Synthesis of Ultra-Incompressible and Recoverable Carbon Nitrides Featuring CN 4 Tetrahedra.

Dominique LanielFlorian TrybelAndrey AslandukovSaiana KhandarkhaevaTimofey FedotenkoYuqing YinNobuyoshi MiyajimaFerenc TasnádiAlena V PonomarevaNityasagar JenaFariia Iasmin AkbarBjoern WinklerAdrien NériStella CharitonVitali PrakapenkaVictor MilmanWolfgang SchnickAlexander N RudenkoMikhail I KatsnelsonIgor A AbrikosovLeonid DubrovinskyNatalia Dubrovinskaia
Published in: Advanced materials (Deerfield Beach, Fla.) (2023)
Carbon nitrides featuring 3D frameworks of CN 4 tetrahedra were identified as one of the great aspirations of materials science, expected to have a hardness greater than or comparable to diamond. After more than three decades of efforts to synthesize them, no unambiguous evidence of their existence has been delivered. Here, we report the high-pressure high-temperature synthesis of three carbon-nitrogen compounds, tI14-C 3 N 4 , hP126-C 3 N 4 , and tI24-CN 2 , in laser-heated diamond anvil cells. Their structures were solved and refined using synchrotron single-crystal X-ray diffraction. Physical properties investigations showed that these strongly covalently bonded materials, ultra-incompressible and superhard, also possess high energy density, piezoelectric, and photoluminescence properties. The novel carbon nitrides are unique among high-pressure materials, as being produced above 100 GPa they are recoverable in air at ambient conditions. This article is protected by copyright. All rights reserved.
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