страницы 255-262

Gold Nanoparticle Array Formation by Low-Temperature Annealing

Тип публикацииBook Chapter
Дата публикации2020-11-28
SCImago Q4
SJR0.12
CiteScore0.3
Impact factor
ISSN09308989, 18674941
Краткое описание
Gold nanoparticle (GNP) formation on silicon by low temperature annealing is studied. Thin gold film deposited on (100) Si annealed in argon ambient at temperatures from 200 to 275 °C turns to spherical cap nanoparticles up to 20 nm in height, as revealed by atomic force microscopy. Nanoparticle shape and size distribution depends on the annealing temperature. Visible light reflection spectrum changes strongly with the change of GNP distribution. A model of light reflection from the Si-GNP surface is developed. Numerical simulation of optical reflection spectra is performed. Results show qualitative agreement between experimental and calculated data.

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Bespalova P. et al. Gold Nanoparticle Array Formation by Low-Temperature Annealing // Springer Proceedings in Physics. 2020. pp. 255-262.
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Bespalova P., Enns Y., Kunkel T., Balanov V., Speshilova A., Vorobyev A., Mishin M., Karaseov P. Gold Nanoparticle Array Formation by Low-Temperature Annealing // Springer Proceedings in Physics. 2020. pp. 255-262.
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TY - GENERIC
DO - 10.1007/978-3-030-58868-7_29
UR - https://doi.org/10.1007/978-3-030-58868-7_29
TI - Gold Nanoparticle Array Formation by Low-Temperature Annealing
T2 - Springer Proceedings in Physics
AU - Bespalova, Polina
AU - Enns, Yakov
AU - Kunkel, Tatyana
AU - Balanov, Vasilii
AU - Speshilova, Anastasiya
AU - Vorobyev, Alexandr
AU - Mishin, Maxim
AU - Karaseov, Platon
PY - 2020
DA - 2020/11/28
PB - Springer Nature
SP - 255-262
SN - 0930-8989
SN - 1867-4941
ER -
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@incollection{2020_Bespalova,
author = {Polina Bespalova and Yakov Enns and Tatyana Kunkel and Vasilii Balanov and Anastasiya Speshilova and Alexandr Vorobyev and Maxim Mishin and Platon Karaseov},
title = {Gold Nanoparticle Array Formation by Low-Temperature Annealing},
publisher = {Springer Nature},
year = {2020},
pages = {255--262},
month = {nov}
}
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