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Thickness-dependent growth of Ni vertical columns deposited by GLAD method: Study on the microstructural and optical properties

Samo za registrovane korisnike
2024
Autori
Potočnik, Jelena
Novaković, Mirjana
Popović, Maja
Članak u časopisu (Objavljena verzija)
Metapodaci
Prikaz svih podataka o dokumentu
Apstrakt
The paper presents a study on the structural and optical properties of nickel (Ni) thin films in the shape of vertical columns obtained by using the glancing angle deposition method. The films are deposited onto glass substrates at a fixed deposition angle of 85° to the different thicknesses of 50 nm, 80 nm, 110 nm, and 140 nm. Field emission scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), and high resolution transmission electron microscopy (HR-TEM) were utilized to analyze the morphological, chemical, and microstructural properties of the films. SEM and TEM analyses are showing well-defined columnar structures, where the increase in thickness leads to more porous films and larger column diameters. The results of the surface examination of the XPS confirm that metallic Ni is a major phase in the deposited structures, but all samples also exhibit a certain amount of oxide phases. The optical measurements of the effective dielectric function reveal that both ...real and imaginary parts are strongly influenced by the changes in the film thickness. The surface plasmon resonance (SPR) peak is significantly shifted from 585.6 nm, as obtained for a 50 nm thick film, to 1291.8 nm in the case of a thickness of 140 nm. The variation in SPR peak position can be related to the differences in the film's morphology, and it is attributed to the changes in the size of the formed Ni nanoparticles. Finally, the experimental results show that with increasing film thickness, the electrical resistivity decreases. Both optical and electrical properties are found to be determined by the growth mechanism, and they are discussed on the basis of the defect concentration of the films.

Ključne reči:
Nickel / Vertical columns / GLAD technique / Porous structure / Optical properties / Resistivity
Izvor:
Optical Materials, 2024, 154, 115665-
Finansiranje / projekti:
  • Ministarstvo nauke, tehnološkog razvoja i inovacija Republike Srbije, institucionalno finansiranje - 200017 (Univerzitet u Beogradu, Institut za nuklearne nauke Vinča, Beograd-Vinča) (RS-MESTD-inst-2020-200017)

DOI: 10.1016/j.optmat.2024.115665

ISSN: 0925-3467

Scopus: 2-s2.0-85195676713
[ Google Scholar ]
2
URI
https://vinar.vin.bg.ac.rs/handle/123456789/13361
Kolekcije
  • 040 - Laboratorija za atomsku fiziku
  • Radovi istraživača
Institucija/grupa
Vinča
TY  - JOUR
AU  - Potočnik, Jelena
AU  - Novaković, Mirjana
AU  - Popović, Maja
PY  - 2024
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/13361
AB  - The paper presents a study on the structural and optical properties of nickel (Ni) thin films in the shape of vertical columns obtained by using the glancing angle deposition method. The films are deposited onto glass substrates at a fixed deposition angle of 85° to the different thicknesses of 50 nm, 80 nm, 110 nm, and 140 nm. Field emission scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), and high resolution transmission electron microscopy (HR-TEM) were utilized to analyze the morphological, chemical, and microstructural properties of the films. SEM and TEM analyses are showing well-defined columnar structures, where the increase in thickness leads to more porous films and larger column diameters. The results of the surface examination of the XPS confirm that metallic Ni is a major phase in the deposited structures, but all samples also exhibit a certain amount of oxide phases. The optical measurements of the effective dielectric function reveal that both real and imaginary parts are strongly influenced by the changes in the film thickness. The surface plasmon resonance (SPR) peak is significantly shifted from 585.6 nm, as obtained for a 50 nm thick film, to 1291.8 nm in the case of a thickness of 140 nm. The variation in SPR peak position can be related to the differences in the film's morphology, and it is attributed to the changes in the size of the formed Ni nanoparticles. Finally, the experimental results show that with increasing film thickness, the electrical resistivity decreases. Both optical and electrical properties are found to be determined by the growth mechanism, and they are discussed on the basis of the defect concentration of the films.
T2  - Optical Materials
T1  - Thickness-dependent growth of Ni vertical columns deposited by GLAD method: Study on the microstructural and optical properties
VL  - 154
SP  - 115665
DO  - 10.1016/j.optmat.2024.115665
ER  - 
@article{
author = "Potočnik, Jelena and Novaković, Mirjana and Popović, Maja",
year = "2024",
abstract = "The paper presents a study on the structural and optical properties of nickel (Ni) thin films in the shape of vertical columns obtained by using the glancing angle deposition method. The films are deposited onto glass substrates at a fixed deposition angle of 85° to the different thicknesses of 50 nm, 80 nm, 110 nm, and 140 nm. Field emission scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), and high resolution transmission electron microscopy (HR-TEM) were utilized to analyze the morphological, chemical, and microstructural properties of the films. SEM and TEM analyses are showing well-defined columnar structures, where the increase in thickness leads to more porous films and larger column diameters. The results of the surface examination of the XPS confirm that metallic Ni is a major phase in the deposited structures, but all samples also exhibit a certain amount of oxide phases. The optical measurements of the effective dielectric function reveal that both real and imaginary parts are strongly influenced by the changes in the film thickness. The surface plasmon resonance (SPR) peak is significantly shifted from 585.6 nm, as obtained for a 50 nm thick film, to 1291.8 nm in the case of a thickness of 140 nm. The variation in SPR peak position can be related to the differences in the film's morphology, and it is attributed to the changes in the size of the formed Ni nanoparticles. Finally, the experimental results show that with increasing film thickness, the electrical resistivity decreases. Both optical and electrical properties are found to be determined by the growth mechanism, and they are discussed on the basis of the defect concentration of the films.",
journal = "Optical Materials",
title = "Thickness-dependent growth of Ni vertical columns deposited by GLAD method: Study on the microstructural and optical properties",
volume = "154",
pages = "115665",
doi = "10.1016/j.optmat.2024.115665"
}
Potočnik, J., Novaković, M.,& Popović, M.. (2024). Thickness-dependent growth of Ni vertical columns deposited by GLAD method: Study on the microstructural and optical properties. in Optical Materials, 154, 115665.
https://doi.org/10.1016/j.optmat.2024.115665
Potočnik J, Novaković M, Popović M. Thickness-dependent growth of Ni vertical columns deposited by GLAD method: Study on the microstructural and optical properties. in Optical Materials. 2024;154:115665.
doi:10.1016/j.optmat.2024.115665 .
Potočnik, Jelena, Novaković, Mirjana, Popović, Maja, "Thickness-dependent growth of Ni vertical columns deposited by GLAD method: Study on the microstructural and optical properties" in Optical Materials, 154 (2024):115665,
https://doi.org/10.1016/j.optmat.2024.115665 . .

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