研究目的
To fabricate CaZrO3:Sm3+ nanophosphors using a solution combustion route with Aloe Vera gel as fuel, characterize their properties, and apply them for visualizing latent fingerprints with enhanced level II and III features.
研究成果
The optimized CaZrO3:Sm3+ (5 mol%) nanophosphors exhibit excellent luminescent properties, high color purity, and effective visualization of latent fingerprints with clear level II and III features, making them suitable for applications in solid-state lighting, dosimetry, and forensic science.
研究不足
The non-uniformity in particle size due to uneven scattering of temperature and mass flow during synthesis may affect consistency. The study is limited to specific Sm3+ doping concentrations and surfaces for fingerprint visualization.
1:Experimental Design and Method Selection:
A simple solution combustion route was used for synthesis, employing Aloe Vera gel as a fuel. Characterization methods included PXRD, DRS, SEM, TEM, PL, and TL measurements.
2:Sample Selection and Data Sources:
Samples with Sm3+ concentrations of 1-11 mol% were prepared. Precursors were procured from Sigma Aldrich.
3:List of Experimental Equipment and Materials:
Equipment included Shimadzu PXRD, Hitachi SEM and TEM, Fluorolog-3 spectrophotometer, Nucleonix TLD reader, Perkin Elmer spectrophotometer, and Nikon digital camera. Materials included calcium nitrate tetrahydrate, zirconium(IV) oxynitrate hydrate, samarium(III) nitrate hexahydrate, and Aloe Vera gel.
4:Experimental Procedures and Operational Workflow:
Precursors were dissolved in water with Aloe Vera gel, stirred, heated in a muffle furnace at 450°C, and calcined at 700°C. For fingerprint visualization, latent fingerprints were deposited on various surfaces, stained with nanophosphors, and photographed under normal and UV light.
5:Data Analysis Methods:
Data were analyzed using Scherrer's and Williamson-Hall methods for crystallite size, Kubelka-Munk theory for energy gap, and various equations for photometric properties and thermal activation energy.
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PXRD
Shimadzu
Shimadzu
Phase and structural confirmation of the product
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SEM
Hitachi TM 3000
Hitachi
Study of surface morphologies
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TEM
Hitachi H-8100
Hitachi
Study of surface morphologies and interplanar spacing
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Spectrophotometer
Lambda-35
Perkin Elmer
Study of diffuse reflectance spectra
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Spectrophotometer
Fluorolog-3
Jobin Yvon
Recording photoluminescence measurements
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TLD Reader
Nucleonix
Nucleonix
Recording thermoluminescence measurements
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Digital Camera
Nikon D3100
Nikon
Photographing developed fingerprints
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Muffle Furnace
Heating the solution during synthesis
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