Giant Raman Scattering on Plasmon Metal Surfaces as a Method to Control Their Functional and Supramolecular Structural Characteristics

封面

如何引用文章

全文:

开放存取 开放存取
受限制的访问 ##reader.subscriptionAccessGranted##
受限制的访问 订阅存取

详细

Fundamentals of surface-enhanced Raman spectroscopy/scattering have been developed and possibility of its application to analyze some structural characteristics of surfaces and agglomerates of plasmonic metal nanostructures has been considered. A remote nondestructive express method based on surface-enhanced Raman spectroscopy has been presented to control the degree of local cracking of a metal coating and the effect of defects/cracks on the conductivity of a thin metallized film (uniaxially stretched polyethylene terephthalate track-etched membrane with a 50-nm silver coating).

作者简介

N. Kovalets

Moscow State Pedagogical University;Troitsk Branch, Lebedev Physical Institute, Russian Academy of Sciences

Email: np.kovaletc@mpgu.su
119991, Moscow, Russia;108840, Troitsk, Moscow, Russia

I. Razumovskaya

Moscow State Pedagogical University

Email: np.kovaletc@mpgu.su
119991, Moscow, Russia

S. Bedin

Moscow State Pedagogical University;Troitsk Branch, Lebedev Physical Institute, Russian Academy of Sciences

Email: np.kovaletc@mpgu.su
119991, Moscow, Russia;108840, Troitsk, Moscow, Russia

A. Naumov

Moscow State Pedagogical University;Troitsk Branch, Lebedev Physical Institute, Russian Academy of Sciences

编辑信件的主要联系方式.
Email: np.kovaletc@mpgu.su
119991, Moscow, Russia;108840, Troitsk, Moscow, Russia

参考

  1. G. Barbillon, Int. J. Mol. Sci. 23(18), 10592 (2022).
  2. M. Jahn, S. Patze, I. J. Hidi, R. Knipper, A. I. Radu, A. Muhlig, S. Yuksel, V. Peksa, K. Weber, T. Mayerhofer, D. Cialla-May, and J. Popp, Analyst 141(3), 756 (2016).
  3. В.И. Кукушкин, В.Е. Кирпичев, Е.Н. Морозова, В. В. Соловьев, Я.В. Федотова, И.В. Кукушкин, Письма в ЖЭТФ 112(1), 38 (2020)
  4. V. I. Kukushkin, V.E. Kirpichev, E.N. Morozova, V.V. Solov'ev, Ya.V. Fedotova, and I.V. Kukushkin, JETP Lett. 112(1), 31 (2020).
  5. E.P. Kozhina, S.N. Andreev, V.P. Tarakanov, S.A. Bedin, I.M. Doludenko, and A.V. Naumov, Bull. Russ. Acad. Sci. Phys. 84, 1465 (2020).
  6. E.P. Kozhina, S.A. Bedin, N. L. Nechaeva, S.N. Podoynitsyn, V.P. Tarakanov, S.N. Andreev, Y.V. Grigoriev, A.V. Naumov, Appl. Sci. 11, 1375 2021.
  7. N.P.Kovalets, E. P.Kozhina, I.V.Razumovskaya, S. A.Bedin, A.A. Piryazev, Y.V. Grigoriev, and A.V. Naumov, J. Chem Phys. 156(3), 034902 (2022).
  8. M. Fan, G. F. Andrade, and A.G. Brolo, Anal Chim Acta. 693(1-2), 7 (2011).
  9. А. Г. Милехин, Л.Л. Свешникова, Т.А. Дуда, Н.В. Суровцев, С.В. Адищев, Д.Р.Т. Цан, Письма в ЖЭТФ 88(12), 918 (2008)
  10. A.G. Milekhin, L. L. Sveshnikova, T.A. Duda, N.V. Surovtsev, S.V. Adichtchev, and D.R.T. Zahn, JETP Lett. 88(12), 799 (2008).
  11. М.Д. Тюгаев, А.В. Харитонов, А.Р. Газизов, А.И. Фишман, М.Х. Салахов, А.А. Дедкова, А.М. Алексеев, А.В. Шелаев, С.С. Харинцев, Письма в ЖЭТФ 110(12), 772 (2019).
  12. A. Hakonen, P.O. Andersson, M. Stenbaek, Schmidt, T. Rindzevicius, and M. Kall, Anal Chim Acta. 893, 1 (2015).
  13. E. Zavyalova, O. Ambartsumyan, G. Zhdanov et al. (Collaboration), Nanomaterials 11, 1394 (2021); https://doi.org/10.3390/nano11061394.
  14. A.R. Gazizov, M.K. Salakhov, and S. S. Kharintsev, Bull. Russ. Acad. Sci. Phys. 86(Suppl 1), S71 (2022).
  15. Патент РФ на изобретение. Заявка #2022133942 от 22.12.2022.
  16. N.P. Kovalec, E.P. Kozhina, I.M. Doludenko, I.V. Razumovskaya, S.A. Bedin, Y.V. Grigoriev, and V.M. Kanevsky, Bull. Russ. Acad. Sci. Phys. 85(8), 854 (2021).
  17. I.V. Razumovskaya, N.P. Kovalets, S.A. Bedin, Y.V. Grigor'ev, JETP 132(5), 818 (2021).
  18. L. L. Muhina, I.V. Razumovskaja, S.K. Kudaikulova, B.A. Zhubanov, and M. J.M. Abadie, Eurasian Chemico-Technological Journal 6, 37 (2004).
  19. R.E. Southward and D.W. Thompson, Mater. Des. 22(7), 565 (2001).
  20. H.G. Pippin, Analysis of Silverized Teflon Thermal Control Material Flown on the Long Duration Exposure Facility, NASA CR-4663 (July 1995).
  21. О.А. Ананьева, В.К. Милинчук, Д.Л. Загорский, Химия высоких энергий 41(6), 445 (2007).
  22. B.A. Banks, K.K. de Groh, Sh.K. Miller, and D. L. Waters, Low Earth AIP Conf. Proc. 1087, 312 (2009); https://doi.org/10.1063/1.3076845.
  23. S. L. Bazhenov, I.N. Nasrullaev, I.V. Razumovskaya, S.K. Kudaikulova, B.A. Zhubanov, and M. J.M. Abadie, Eurasian Chemico-Technological Journal 6(1), 41 (2004).
  24. V.А. Bogatov, А.G. Krynin, О.V. Popkov, and Y.А. Khokhlov, Proceedings of VIAM 1, 42 (2016); doi: 10.18577/2307-6046-2016-0-1-42-49.
  25. В.Н. Гумирова, И.В. Разумовская, А.В. Наумов, Известия РАН. Серия физическая 86(12), 1746 (2022).
  26. V. Gumirova, I. Razumovskaya, P. Apel, S. Bedin, and A. Naumov, Membranes 12, 1168 (2022).
  27. P.Y. Apel, O.M. Ivanov, N.E. Lizunov, T. I. Mamonova, A.N. Nechaev, K. Olejniczak, J. Vacik, and S.N. Dmitriev, Nucl. Instrum. Methods Phys. Res. Sect. B Beam Interact. Mater. At. 365, 641 (2015).
  28. P.Y. Apel, O.V. Bobreshova, A.V. Volkov, V.V. Volkov, V.V. Nikonenko, I.A. Stenina, A.N. Filippov, Y.P. Yampolskii, and A.B. Yaroslavtsev, Membr. Membr. Technol. 1, 45 (2019).
  29. O. Glushko, P. Kraker, and M. J. Cordill, Appl. Phys. Lett. 110(19), 191904 (2017).

补充文件

附件文件
动作
1. JATS XML

版权所有 © Российская академия наук, 2023