Optical properties of magnetoplasmonic microdiscs

封面

如何引用文章

全文:

详细

We investigated the polarizability, optical density spectra, and photothermal properties of Au/Fe/Au and Fe/Au/Fe layered microdisks synthesized by lift-off optical lithography. An analytical method for determining the electric polarizability in the quasi-static approximation is proposed. Theoretical and experimental results are consistent in the visible and near-IR spectral ranges. The results obtained provide an assessment of the applicability of such microdisks for combined photothermal and magnetomechanical anticancer therapy.

作者简介

A. Anikin

Immanuel Kant Baltic Federal University

Email: anikinamon93@gmail.com
Kaliningrad, Russia

A. Motorzhina

Immanuel Kant Baltic Federal University

Kaliningrad, Russia

V. Belyaev

Immanuel Kant Baltic Federal University

Kaliningrad, Russia

V. Rodionova

Immanuel Kant Baltic Federal University

Kaliningrad, Russia

L. Panina

Immanuel Kant Baltic Federal University; National University of Science and Technology “MISIS”

Kaliningrad, Russia; Moscow, Russia

参考

  1. Кабтош I., Savadogo O. // Progr. Biomater. 2016. V. 5 P. 147.
  2. Oliveira H., Pérez-Andrés E., Thevenot J. et al. // J. Control. Release. 2013. V. 169. P. 165.
  3. Naud C., Thébault C., Carrière M. et al. // Nanoscale Adv. 2020. V. 2. P. 3632.
  4. Головин Ю.И., Жисачев А.О., Казань Н.Л., Кабанов А.В. // Изв. РАН. Сер. физ. 2018. Т. 82. № 9. С. 1182; Golovin Y.I., Zhigachev A.O., Kiyachko N.L. et al. // Bull. Russ. Acad. Sci. Phys. 2018. V. 82. No. 9. P. 1073.
  5. Kim D.H., Rozhkova E.A., Ulasov I.V. et al. // Nature Mater. 2009. V. 9. P. 165.
  6. Novosad V., Rozhkova E.A. // In: Biomedical Engineering, Trends in Materials Science, 2011. P. 425.
  7. Contreras M., Sougrat R., Zaher A. et al. // IJN. 2015. V. 10. P. 2141.
  8. Аникин А.А., Шумская Е.Е., Бедин С.А. и др. // Изв. РАН. Сер. физ. 2024. Т. 88. № 4. С. 683; Anikin A.A., Shumskaya E.E., Bedin S.A. et al. // Bull. Russ. Acad. Sci. Phys. 2024. V. 88. No. 6. P. 1010.
  9. Mansell R., Venulkar T., Petit D.C.M.C. et al. // Sci. Reports. 2017. V. 7. Art. No. 4257.
  10. Efremova M.V., Naumenko V.A., Spasova M. et al. // Sci. Reports. 2018. V. 8. Art. No. 11295.
  11. Shi X., Tian Y., Liu Y. et al. // Front. Oncol. 2022. V. 12. Art. No. 939365.
  12. Espinosa A., Kolosnijaj-Tabi J., Abou-Hassan A. et al. // Adv. Funct. Mater. 2018. V. 28. Art. No. 1803660.
  13. Субекин А.Ю., Пылев Т.Е., Кукушкин В.И. и др. // Изв. РАН. Сер. физ. 2024. Т. 88. № 2. С. 211; Subekin A.Y., Pydeev T.E., Kukushkin V.I. et al. // Bull. Russ. Acad. Sci. Phys. 2024. V. 88. P. 178.
  14. Venermo J., Silvola A. // J. Electrostat. 2005. V. 63. P. 101.
  15. Bohren C.F., Huffman D.R. Absorption and Scattering of Light by Small Particles. N.Y.: Wiley, 1983. 533 p.
  16. Johnson P.B., Christy R.W. // Phys. Rev. B. 1972. V. 6. P. 4370.
  17. Johnson P.B., Christy R.W. // Phys. Rev. B. 1974. V. 9. P. 5056.
  18. Roper D.K., Ahn W., Hoepfner M. // J. Phys. Chem. C. 2007. V. 111. P. 3636.

补充文件

附件文件
动作
1. JATS XML

版权所有 © Russian Academy of Sciences, 2025