The influence of nanocomposites on the memristive properties of Cu/(Co40Fe40B20)x(SiO2)100-x/LiNbO3/Cr/Cu/Cr capacitor structures
Sitnikov A. V. 1,2, Kalinin Yu. E. 1, Babkina I. V. 1, Nikonov A. E. 1, Pogrebnoy D.S. 1, Shakurov A. R. 1
1Voronezh State Technical University, Voronezh, Russia
2National Research Center “Kurchatov Institute”, Moscow, Russia
Email: sitnikov04@mail.ru, kalinin48@mail.ru, ivbabkina@mail.ru, nikonov.sasha1994@gmail.com, aleks.shakurov@mail.ru

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The paper reveals the results of a study of the memristive properties of the Cu/(Co40Fe40B20)x(SiO2)100-x/ LiNbO3/Cr/Cu/Cr/citall structure. It has been shown that the use of (Co40Fe40B20)x(SiO2)100-x nanocomposites makes it possible to realize a set of good, practically significant memristive properties. Thus, the switching voltage from the HRS to the LRS state of the capacitor structure and back is ±4 V, the Roff/Ron ratio reaches hundreds of units, the number of reversible resistive switching cycles is more than 104, and the plasticity of resistive states are being realized. It has been confirmed that to implement a multifilament resistive switching in a dielectric layer, the presence of nanocomposite in the concentration range of the metal phase up to the percolation threshold is necessary as an upper electrode. In this case, the main role is played by the structure of the nanocomposite, and the elemental composition of the heterogeneous film is not so significant for the implementation of a complex of technologically significant properties of the memristor. Keywords: Resistive switching, memristors, nanocomposite, lithium niobate.
  1. D. Ielmini. Semicond. Sci. Technol, 31, 063002 (2016). DOI: 10.1088/0268-1242/31/6/063002
  2. W. Banerjee, Q. Liu, H. Hwang. J. Appl. Phys., 127, 051101 (2020). DOI: 10.1063/1.5136264
  3. Y. Zhang, Z. Wang, J. Zhu, Y. Yang, M. Rao, W. Song, Y. Zhuo, X. Zhang, M. Cui, L. Shen, R. Huang, J. Yang. Appl. Phys. Rev., 7, 011308 (2020). DOI: 10.1063/1.5124027
  4. D. Ham, H. Park, S. Hwang, K. Kim. Nat. Electron., 4, 635 (2021). DOI: 10.1038/s41928-021-00646-1
  5. Q. Xia, J.J. Yang. Nat. Mater., 18, 309 (2019). DOI: 10.1038/s41563-019-0291-x
  6. M. Zhuk, S. Zarubin, I. Karateev, Y. Matveyev, E. Gornev, G. Krasnikov, D. Negrov, A. Zenkevich. Front. Neurosci., 14, 94 (2020). DOI: 10.3389/fnins.2020.00094
  7. B.S. Shvetsov, A.V. Emelyanov, A.A. Minnekhanov, V.V. Rylkov, V.A. Demin. Nanotechnol. Russia., 16, 777 (2021). DOI: 10.1134/S2635167621060239
  8. Z. Wang, H. Wu, G.W. Burr, C.S. Hwang, K.L. Wang, Q. Xia, J.J. Yang. Nature Rev. Mater., 5, 173 (2020). DOI: 10.1038/s41578-019-0159-3
  9. G.A. Yuklyaevskikh, B.S. Shvetsov, A.V. Emelyanov, V.A. Kulagin, V.V. Rylkov, V.A. Demin. Chaos, Solitons Fractals, 190, 115784 (2025). DOI: 10.1016/j.chaos.2024.115784
  10. Y. Li, Z. Wang, R. Midya, Q. Xia, J.J. Yang. J. Phys. D: Appl. Phys., 51, 503002 (2018). DOI: 10.1088/1361-6463/aade3f
  11. D.-H. Kwon, K.M. Kim, J.H. Jang, J.M. Jeon, M.H. Lee, G.H. Kim, X.-S. Li, G.-S. Park, B. Lee, S. Han, M. Kim, C.S. Hwang. Nat. Nanotechnol., 5, 153 (2010). DOI: 10.1038/nnano.2009.456
  12. J.-Y. Chen, C.-W. Huang, C.-H. Chiu, Y.-T. Huang, W.-W. Wu. Adv. Mater., 27, 5028 (2015). DOI: 10.1002/adma.201502758
  13. H. Jiang, L. Han, P. Lin, Z. Wang, M.H. Jang, Q. Wu, M. Barnell, J.J. Yang, H.L. Xin, Q. Xia. Sci. Rep., 6, 28525 (2016). DOI: 10.1038/srep28525
  14. V.V. Rylkov, S. Nikolaev, V.A. Demin, A.V. Emelyanov, A.V. Sitnikov, K.E. Nikiruy, V.A. Levanov, M.Yu. Presnyakov, A.N. Taldenkov, A.L. Vasiliev, K.Yu. Chernoglazov, A. Vedeneev, Yu.E. Kalinin, A.B. Granovsky, V. Tugushev, A.S. Bugaev. J. Exp. Theor. Phys., 126, 367 (2018). DOI: 10.1134/S1063776118020152
  15. V.A. Levanov, A.V. Emel'yanov, V.A. Demin, K.E. Nikirui, A.V. Sitnikov, S.N. Nikolaev, A.S. Vedeneev, Yu.E. Kalinin, V.V. Rylkov. J. Commun. Technol. Electron., 63, 496 (2018). DOI: 10.1134/S1064226918050078
  16. K.E. Nikiruy, A.V. Emelyanov, V.A. Demin, A.V. Sitnikov, A.A. Minnekhanov, V.V. Rylkov, P.K. Kashakrov, M.V. Kovalchuk. AIP Advances, 9, 065116 (2019). DOI: 10.1063/1.5111083
  17. A.V. Emelyanov, K.E. Nikiruy, A.V. Serenko, A.V. Sitnikov, M.Yu. Presnyakov, R.B. Rybka, A.G. Sboev, V.V. Rylkov, P.K. Kashkarov, M.V. Kovalchuk. Nanotechnology, 31, 045201 (2020). DOI: 10.1088/1361-6528/ab4a6d
  18. K.E. Nikiruy, I.A. Surazhevsky, V.A. Demin, A.V. Emelyanov. Phys. Status Solidi A, 217 (18), 1900938 (2020). DOI: 10.1002/pssa.201900938
  19. I.A. Surazhevsky, V.A. Demin, A.I. Ilyasov, A.V. Emelyanov, K.E. Nikiruy, V.V. Rylkov, S.A. Shchanikov, I.A. Bordanov, S.A. Gerasimova, D.V. Guseinov, N.V. Malekhonova, D.A. Pavlov, A.I. Belov, A.N. Mikhaylov, V.B. Kazantsev, D. Valenti, B. Spagnolo, M.V. Kovalchuk. Chaos, Solitons Fractals, 146, 110890 (2021). DOI: 10.1016/j.chaos.2021.110890
  20. V.V. Rylkov, S.N. Nikolaev, K.Y. Chernoglazov, V.A. Demin, M.Y. Presnyakov, A.L. Vasiliev, V.V. Tugushev, A.B. Granovsky, A.V. Sitnikov, Y.E. Kalinin, N.S. Perov, A.S. Vedeneev. Phys. Rev. B, 95 (14), 144202 (2017). DOI: 10.1103/PhysRevB.95.144202
  21. A.V. Sitnikov, I.V. Babkina, Yu.E. Kalinin, A.E. Nikonov, M.N. Kopytin, A.R. Shakurov, O.I. Remizova, L.I. Yanchenko. ZhTF, 92 (9), 1382 (2022) (in Russian). DOI: 10.21883/JTF.2022.09.52930.94-22
  22. A.V. Sitnikov. Materialovedenie, 3, 49 (2010). (in Russian)
  23. S.A. Gridnev, Yu.E. Kalinin, A.V. Sitnikov, O.V. Stogney. Nelineynye yavleniya v nano- i mikrogeterogennykh sistemakh (BINOM, Laboratoriya znaniy, M., 2012) (in Russian)
  24. Yu.E. Kalinin, A.N. Remizov, A.V. Sitnikov. Phys. Solid State, 46 (11), 2146 (2004). DOI: 10.1134/1.1825563
  25. N. Domracheva, M. Caporali, E. Rentschler. Novel Magnetic Nanostructures: Unique Properties and Applications (Elsevier, 2018)
  26. A.V. Sitnikov, A.V. Yemelyanov, A.E. Nikonov, K.E. Nikitui, K.Y. Chernoglazov, D.V. Ichetkin, A.I. Ilyasov, S.N. Nikolaev, V.A. Demin, A.S. Vedeneev, Yu.E. Kalinin, V.V. Rylkov. V sb.: Materialy XXVI Mezhdunarodnogo simpoziuma "Nanofizika i nanoelektronika", pod red. M.L. Timoshenko, V.V. SHeina (Izd-vo Nizhegorodskogo gos. un-ta im. N.I. Lobachevskogo, Nizhnij Novgorod, 2022), p. 362 (in Russian)
  27. K.E. Nikiruy, A.V. Yemelyanov, V.A. Demin, V.V. Rylkov, A.V. Sitnikov, P.K. Kashkarov. Pisma v ZhTF 44, 28 (2018) (in Russian). DOI: 10.21883/PJTF.2018.10.46095.17099

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