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Graphene has initiated intensive research efforts on 2D crystalline materials due to its extraordinary set of properties and the resulting host of possible applications. Here the authors report on the controllable large-scale synthesis of C3 N, a 2D crystalline, hole-free extension of graphene, its structural characterization, and some of its unique properties. C3 N is fabricated by polymerization of 2,3-diaminophenazine. It consists of a 2D honeycomb lattice with a homogeneous distribution of nitrogen atoms, where both N and C atoms show a D6h -symmetry. C3 N is a semiconductor with an indirect bandgap of 0.39 eV that can be tuned to cover the entire visible range by fabrication of quantum dots with different diameters. Back-gated field-effect transistors made of single-layer C3 N display an on-off current ratio reaching 5.5 × 1010 . Surprisingly, C3 N exhibits a ferromagnetic order at low temperatures (<96 K) when doped with hydrogen. This new member of the graphene family opens the door for both fundamental basic research and possible future applications.
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Yang et al. (Mon,) studied this question.
synapsesocial.com/papers/69dbf1e1387cf70698689386 — DOI: https://doi.org/10.1002/adma.201605625
Siwei Yang
Chinese Academy of Sciences
Wei Li
University of Science and Technology of China
Caichao Ye
Southern University of Science and Technology
Advanced Materials
Chinese Academy of Sciences
Technion – Israel Institute of Technology
Zhejiang University
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