Enhanced optical and ragged metamaterials properties of silver silica nanocomposite thin film via sol-gel and electrophoresis deposition technique
Abstract. Various filling fractions of silver silica nanocomposites (Ag-SiO2 NC) were successfully synthesized via sol-gel technique and deposited onto indium tin oxide via electrophoretic deposition (EPD) for thin film applications. Ag-SiO2 NC was investigated using X-ray diffraction, FTIR spectr...
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my.iium.irep.1006462022-10-14T09:02:07Z http://irep.iium.edu.my/100646/ Enhanced optical and ragged metamaterials properties of silver silica nanocomposite thin film via sol-gel and electrophoresis deposition technique Taib, Taifunisyam Johan, Mohd. Rafie Basirun, Wan Jefrey QC Physics Abstract. Various filling fractions of silver silica nanocomposites (Ag-SiO2 NC) were successfully synthesized via sol-gel technique and deposited onto indium tin oxide via electrophoretic deposition (EPD) for thin film applications. Ag-SiO2 NC was investigated using X-ray diffraction, FTIR spectroscopy, Uv-vis and transmission electron microscopy. The XRD and Uv-vis results revealed that Ag-SiO2 NC is stable with a filling fraction of 0.6 in the dielectric medium with excellent absorption peak. Spectroscopy Ellipsometry shows that the effective permittivity and refractive index obtained from this filling fraction are -0.88 and 0.90, respectively. A ragged of metamaterial properties at negative permittivity are also reported. Scientific Net 2022 Article PeerReviewed application/pdf en http://irep.iium.edu.my/100646/1/100646_Enhanced%20optical%20and%20ragged.pdf Taib, Taifunisyam and Johan, Mohd. Rafie and Basirun, Wan Jefrey (2022) Enhanced optical and ragged metamaterials properties of silver silica nanocomposite thin film via sol-gel and electrophoresis deposition technique. Journal of Nano Research, 74. pp. 11-24. ISSN 1662-5250 E-ISSN 1661-9897 https://www.scientific.net/JNanoR.74.11 10.4028/p-p0i512 |
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QC Physics Taib, Taifunisyam Johan, Mohd. Rafie Basirun, Wan Jefrey Enhanced optical and ragged metamaterials properties of silver silica nanocomposite thin film via sol-gel and electrophoresis deposition technique |
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Abstract. Various filling fractions of silver silica nanocomposites (Ag-SiO2 NC) were successfully synthesized via sol-gel technique and deposited onto indium tin oxide via electrophoretic deposition (EPD) for thin film applications. Ag-SiO2 NC was investigated using X-ray diffraction, FTIR
spectroscopy, Uv-vis and transmission electron microscopy. The XRD and Uv-vis results revealed that Ag-SiO2 NC is stable with a filling fraction of 0.6 in the dielectric medium with excellent absorption peak. Spectroscopy Ellipsometry shows that the effective permittivity and refractive index
obtained from this filling fraction are -0.88 and 0.90, respectively. A ragged of metamaterial properties at negative permittivity are also reported. |
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Article |
author |
Taib, Taifunisyam Johan, Mohd. Rafie Basirun, Wan Jefrey |
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Taib, Taifunisyam Johan, Mohd. Rafie Basirun, Wan Jefrey |
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Taib, Taifunisyam |
title |
Enhanced optical and ragged metamaterials properties of silver silica nanocomposite thin film via sol-gel and electrophoresis deposition technique |
title_short |
Enhanced optical and ragged metamaterials properties of silver silica nanocomposite thin film via sol-gel and electrophoresis deposition technique |
title_full |
Enhanced optical and ragged metamaterials properties of silver silica nanocomposite thin film via sol-gel and electrophoresis deposition technique |
title_fullStr |
Enhanced optical and ragged metamaterials properties of silver silica nanocomposite thin film via sol-gel and electrophoresis deposition technique |
title_full_unstemmed |
Enhanced optical and ragged metamaterials properties of silver silica nanocomposite thin film via sol-gel and electrophoresis deposition technique |
title_sort |
enhanced optical and ragged metamaterials properties of silver silica nanocomposite thin film via sol-gel and electrophoresis deposition technique |
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Scientific Net |
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2022 |
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http://irep.iium.edu.my/100646/1/100646_Enhanced%20optical%20and%20ragged.pdf http://irep.iium.edu.my/100646/ https://www.scientific.net/JNanoR.74.11 |
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