研究目的
To investigate the effect of optical linear, nonlinear and thermal properties of platinum-graphene oxide nanocomposite solution synthesized using a laser ablation technique.
研究成果
The study demonstrated that platinum nanoparticles synthesized in graphene oxide solution using laser ablation technique enhanced the optical and thermal properties of the nanocomposite. The particle size decreased with increasing ablation time, while the concentration and volume fraction increased. The linear and nonlinear refractive indices, thermal diffusivity, and thermal effusivity increased with the volume fraction of platinum nanoparticles.
研究不足
The study is limited to the synthesis and characterization of platinum nanoparticles in graphene oxide solution using laser ablation. The optical and thermal properties were measured under specific conditions and may vary with different synthesis methods or environmental conditions.
1:Experimental Design and Method Selection:
Laser ablation technique was used to synthesize platinum nanoparticles in graphene oxide aqueous solution. UV-visible spectroscopy, Z-scan, thermal lens, and photoacoustic techniques were employed to investigate the optical and thermal properties.
2:Sample Selection and Data Sources:
Samples were prepared with different ablation times (5, 10, 20, and 30 minutes).
3:List of Experimental Equipment and Materials:
Nd:YAG Q-Switch pulsed laser beam, UV-visible spectrometer (Perkin Elmer, Parstat 2263), transmission electron microscopy (TEM, HitachiH-7100), Z-scan setup, thermal lens setup, photoacoustic setup.
4:Experimental Procedures and Operational Workflow:
Platinum nanoparticles were synthesized in graphene oxide solution using laser ablation. The samples were characterized using UV-visible spectroscopy, TEM, and FT-IR. Optical and thermal properties were measured using Z-scan, thermal lens, and photoacoustic methods.
5:Data Analysis Methods:
The linear and nonlinear refractive indices, thermal diffusivity, and thermal effusivity were derived from the experimental data using theoretical models and equations.
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