Formation specifics and properties of gold particle thin films and arrays deposited on the surface of opal films
Authors: Panfilova E.V., Dobronosova A.A.
Published in issue: #8(68)/2017
DOI: 10.18698/2308-6033-2017-8-1650
Category: Metallurgy and Science of Materials | Chapter: Science of Materials in Mechanical Engineering
We present a technology for depositing thin films and regular arrays of gold nanoparticles on the surface of opal films. We supply the results of studying the relief parameters in the samples of the resulting structures using a spectrophotometer, an atomic-force microscope and a Raman spectrometer. We determine that by varying the time of depositing the gold it is possible to form on the opal surface either nanometre-scale particle arrays or a continuous gold film following the relief of the opal matrix. We found out that the particle arrays formed have plasmonic structure properties, demonstrating effects of amplifying surface enhanced Raman scattering. The results presented may aid in developing a technology for forming various layered structures and particle systems on the surface of opal matrices, for instance, in manufacturing photonics devices, gas sensor detectors, substrates amplifying surface enhanced Raman scattering, and emission devices.
References
[1] Bulygina E.V., Sidorova S.A., Besedina K.N. Issledovanie mikrorelefa tonkoplenochnykh struktur, sformirovannykh na poverkhnosti sinteticheskogo opala [Investigating microrelief of thin-film structures formed on the surface of a synthetic opal]. Vysokie tekhnologii v promyshlennosti Rossii. Materialy XV mezhdunar. nauch.-tekhn. konf [High technology in Russian industry. Proc. of the 15th international scientific and technological conference]. Moscow, Bauman Moscow State Technical University, 9-11 September 2009. Moscow, JSC TECHNOMASH Publ., 2009, pp. 491-493.
[2] Besedina K.N., Vostrikova A.V., Dvukhsherstova O.O., Kalinin V.N., Panfilova E.V. Nanoinzheneriya - Nanoengineering, 2013, no. 12 (30), pp. 36-38.
[3] Alekseeva N.O., Veysman V.L., Grebneva L.V., Lukin A.E., Pankova S.V., Solovev V.G., Yanikov M.V. Vestnik Pskovskogo gosudarstvennogo universiteta. Ser. Estestvennye i fizikomatematicheskie nauki - "Vestnik PskovSU" Magazine (Herald of Pskov State University), Series "Natural and physical and mathematical sciences", 2012, no. 1, pp. 176-181.
[4] Zhan P., Wang Z.L., Dong H., Sun J., Wu J., Wang H.-T. et al. Advanced Materials, 2006, vol. 18, pp. 1612-1616.
[5] Ding B., Pemble M.E., Korovin A.V., Peschel U., Romanov S.G. Applied Physics, 2011, vol. 103, pp. 889-894.
[6] Ding B., Bardosova M., Pemble M.E., Korovin A.V., Peschel U., Romanov S.G. Advanced Functional Materials, 2011, vol. 21, pp. 4182-4192.
[7] Tsvetkov M.Yu., Bagratashvili V.N., Samoylovich M.I., Khlebtsov N.G., Khlebtsov B.N., Evlashin S.A. SERS podlozhki na osnove samoassemblirovannykh i gibridnykh plazmonnykh nanostruktur [SERS substrates based on self-assembling and hybrid plasmonic nanostructures]. Vysokie tekhnologii v promyshlennosti Rossii. Materialy XV mezhdunar. nauch.-tekhn. konf. [High technology in Russian industry. Proc. of the 15th international scientific and technological conference]. Moscow, Bauman Moscow State Technical University, 11-13 September, 2014. Moscow, JSC TECHNOMASH Publ., 2014, pp. 368-385.