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Effect of Lattice Defects on the Transport Properties of Graphene Nanoribbon., , , , и . NANOARCH, стр. 1-2. IEEE, (2019)Modeling of memristor-based RF switches., , , , , , , , и . MOCAST, стр. 1-4. IEEE, (2023)Current Characteristics of Defective GNR Nanoelectronic Devices., , , , и . NANOARCH, стр. 8:1-8:6. ACM, (2022)Implementation of Cellular Automata Using Graphene Nanoribbons with Magnetic Contacts., , и . ACRI, том 12599 из Lecture Notes in Computer Science, стр. 169-176. Springer, (2020)Multi-Valued Logic Circuits on Graphene Quantum Point Contact Devices., , , и . NANOARCH, стр. 44-48. ACM, (2018)Energy Efficient Cooperative Communications in Aggregated VLC/RF Networks With NOMA., , , , , , и . IEEE Trans. Commun., 71 (9): 5408-5419 (сентября 2023)Design of MAC-layer Protocols for Distributed NOMA-based VLC Networks., , , , , и . CSNDSP, стр. 32-37. IEEE, (2022)Energy Efficiency Maximization in Cooperative Hybrid VLC/RF Networks with NOMA., , , , и . ISWCS, стр. 1-6. IEEE, (2021)Optimal Aggregation of RF and VLC Bands for Beyond 5G Mobile Services., , , , , , и . WiMob, стр. 75-80. IEEE, (2022)RSMA Inspired User Cooperation in Hybrid VLC/RF Networks for Coverage Extension., , , , , , и . WCNC, стр. 1-6. IEEE, (2023)