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Raman Spectroscopy of Multilayer Graphene Structures with Different Twist Angles Between Layers

Abstract

Graphene samples with a different number of layers and their relative rotation in graphene plane were obtained by chemical vapor deposition on a copper catalyst. The properties of the obtained graphene structures have been revealed by Raman spectroscopy. The position and form of the main peaks change depending on the number of layers and their rotation, which indicates a change in the nature of interaction between the layers. Additional peaks have been studied depending on the value of the angle of graphene layers rotation. Determining the distinctive characteristics of the studied twisted structures is a necessary step in optimizing the scalable process of synthesis and production of graphene-based nanoelectronic devices.

About the Authors

D. P. Borisenko
Institute for Nanoengineering in Electronics, Spintronics and Photonics, National Research Nuclear University “MEPhI”
Russian Federation

Moscow



N. I. Kargin
Institute for Nanoengineering in Electronics, Spintronics and Photonics, National Research Nuclear University “MEPhI”
Russian Federation

Moscow



M. G. Rybin
LCC RUSGRAPHENE
Russian Federation

Serpukhov



References

1. A. Geim, K. Novoselov. Nature Mater., 6 (2007) 183—191

2. A. K. Geim. Science, 324, N 5934 (2009) 1530—1534

3. R. M. Westervelt. Science, 320, N 5874 (2008) 324—325

4. F. Bonaccorso, Z. Sun, T. Hasan, A. C. Ferrari. Nature Photon., 4, N 9 (2010) 611—622

5. D. P. Borisenko, A. S. Gusev, N. I. Kargin, P. L. Dobrokhotov, A. A. Timofeev, V. A. Labunov, M. M. Mikhalik, K. P. Katin, M. M. Maslov, P. S. Dzhumaev. Appl. Sci., 12 (2022) 11516

6. M. Losurdo, M. M. Giangregorio, P. Capezzuto, G. Bruno. Phys. Chem. Chem. Phys., 13, N 46 (2011) 20836

7. F. Kiani, Z. Razzaghi, B. Ghadiani, M. Tamizifar, M. H. Mohmmadi, A. Simchi. Ceram. Int., 43, N 17 (2017) 15010—15017

8. H. C. Lee, W.-W. Liu, S.-P. Chai, A. R. Mohamed, A. Aziz, C.-S. Khe, U. Hashim. RSC Adv., 7, N 26 (2017) 15644—15693

9. H. C. Hong, J. I. Ryu, H. C. Lee. Nanomaterials, 13, N 15 (2023) 2217

10. Y. Shan, Y. Li, D. Huang, Q. Tong, W. Yao, W.-T. Liu, S. Wu. Sci. Adv., 4, N 6 (2018) eaat0074

11. C. Zhiying, S. Yanping, Li Jing, He Kang, Shuang Wang, Sunwen Zhao, Xiuli Gao, Songang Peng, Zhi Jin, Xinyu Liu, Zh. Yanhui, Guanghui Yu. Carbon, 172 (2021) 480—487

12. C. Yelgel. J. Physics: Conf. Ser., 707 (2016) 012022

13. M. Wang, W. Shan, H. Wang. Phys. Status Solidi (b) (2023) 260

14. P. Novelli, I. Torre, F. H. L. Koppens, F. Taddei, M. Polini. Phys. Rev. B, 102, N 12 (2020)

15. Z. Hennighausen, S. Kar. Electron. Struct., 3 (2021) 014004

16. Giorgio Di Battista, K. Fong, A. Diez-Carlon, K. Watanabe. Sci. Adv., 10, N 38 (2024)

17. H. Agarwal, K. Nowakowski, A. Forrer. Nat. Photon., 17 (2023) 1047—1053

18. K. Kim, S. Coh, L. Z. Tan, W. Regan, J. M. Yuk, E. Chatterjee, A. Zettl. Phys. Rev. Lett., 108, N 24 (2012)

19. Anna K. Ott, Andrea C. Ferrari. Raman Spectroscopy of Graphene and Related Materials, Academic Press (2024) 233—247

20. A. Jorio. ISRN Nanotechnology, 8, N 8 (2012) 1—16

21. C. Cong, T. Yu, H. Wang. ACS Nano, 4, N 6 (2010) 3175—3180

22. F. Herziger, C. Tyborski, O. Ochedowski, M. Schleberger, J. Maultzsch. Phys. Rev. B, 90, N 24 (2014)

23. Z. Luo, C. Cong, J. Zhang, Q. Xiong, T. Yu. Carbon, 50, N 11 (2012) 4252—4258

24. J. S. Park, A. Reina, R. Saito, J. Kong, G. Dresselhaus, M. S. Dresselhaus. Carbon, 47, N 5 (2009) 1303—1310

25. V. Carozo, C. M. Almeida, E. H. M. Ferreira, L. G. Cançado, C. A. Achete, A. Jorio. Nano Lett., 11, N 11 (2011) 4527—4534

26. P. Ramnani, M. R. Neupane, A. A. Balandin, R. K. Lake, A. Mulchandani. Carbon, 123 (2017) 302—306

27. M. Long, A. Jimeno-Pozo, H. Sainz-Cruz, P. A. Pantaleón, F. Guinea. Proc. Natl. Acad. Sci., 121, N 32 (2024) e2405259121

28. Y. Cao, V. Fatemi, S. Fang, K. Watanabe, T. Taniguchi, E. Kaxiras, P. Jarillo-Herrero. Nature, 556, N 7699 (2018) 43—50

29. J. Yin, H. Wang, H. Peng, H. Nat. Commun., 7 (2016) 10699

30. K. Xin, X. Wang, K. Grove-Rasmussen, Z. Wei. J. Semicond., 43 (2022) 011001

31. O. V. Kononenko, M. Brzhezinskaya, A. O. Zotov, V. I. Korepanov, V. Levashov, V. Matveev, D. Roshchupkin. Carbon, 194 (2022) 52—61

32. M. G. Rybin, E. A. Guberna, E. A. Obraztsova, I. Kondrashov, I. I. Kurkina, S. A. Smagulova, E. D. Obraztsova. Carbon Trends, 15 (2024) 100349

33. Z. Liu, S. P. Lau, F. Yan. Chem. Soc. Rev., 44, N 15 (2015) 5638—5679

34. M. V. O. Moutinho, G. S. N. Eliel, A. Righi. Sci. Rep., 11 (2021) 17206

35. U. Mogera, G. U. Kulkarni. Carbon, 156 (2020) 470—487

36. G. S. N. Eliel, M. V. O. Moutinho, A. C. Gadelha. Nat. Commun., 9 (2018) 1221

37. C. Cong, T. Yu, R. Saito, G. F. Dresselhaus, M. S. Dresselhaus. ACS Nano, 5, N 3 (2011) 1600—1605

38. A. Niilisk, J. Kozlova, H. Alles, J. Aarik, V. Sammelselg. Carbon, 98 (2016) 658—665

39. Z. Tan, S. Han, J. Jia, M. Zhu, H. Xu, S. Mi, K. Li, L. Wang, Z. Cheng, S. Chen. ACS Appl. Mater Interfaces, 16, N 8 (2024) 10867—10876

40. V. Carozo, C. M. Almeida, B. Fragneaud, P. M. Bedê, M. V. O. Moutinho, J. Ribeiro-Soares, L. G. Cançado. Phys. Rev. B, 88, N 8 (2013)


Supplementary files

Review

For citations:


Borisenko D.P., Kargin N.I., Rybin M.G. Raman Spectroscopy of Multilayer Graphene Structures with Different Twist Angles Between Layers. Zhurnal Prikladnoii Spektroskopii. 2025;92(4):484-491. (In Russ.)

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ISSN 0514-7506 (Print)