研究目的
Investigating the fabrication of nanoparticle gradient materials using ultracentrifugal fields for applications in optics, electronics, and sensors.
研究成果
A novel method for the fabrication of nanoparticle gradient materials by centrifugation has been developed. The method allows for the simulation and detection of gradients anytime in the AUC, and it can be scaled up for larger materials. The method has the potential to produce a wide variety of functional gradient materials by varying the nanoparticles, the surrounding matrix, and the centrifugation parameters.
研究不足
The size and shape of the materials are limited when analytical ultracentrifuges are used. Upscaling to bigger centrifuges is possible but requires homogeneous heating of the surrounding matrix.
1:Experimental Design and Method Selection:
The study uses analytical ultracentrifugation (AUC) to fabricate nanoparticle gradient materials in a gelatin matrix. The concentration gradient is simulated in advance using the thermodynamic theory of AUC and detected using optical systems.
2:Sample Selection and Data Sources:
Spherical gold nanoparticles of different sizes, gold nanorods, mixtures thereof, and spherical superparamagnetic iron oxide nanoparticles are used.
3:List of Experimental Equipment and Materials:
AUC Ti double sector cell, gelatin, gold nanoparticles, superparamagnetic iron oxide nanoparticles, and various chemicals for synthesis.
4:Experimental Procedures and Operational Workflow:
Nanoparticles are sedimented in liquid gelatin at 40 °C, and the gradient is detected over time. The gelatin is solidified by cooling to fix the gradient.
5:Data Analysis Methods:
The sedimentation behavior is analyzed using SEDFIT and Ultrascan III software.
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UV–vis spectrometer
USB2000+
Ocean Optics
Used for UV–vis measurements.
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TEM
Libra 120
Zeiss
Used for taking TEM images of nanoparticles.
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DLS
NANO ZSP
Malvern
Used for dynamic light scattering measurements.
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oscillating U-tube
DMA 5000 M
Anton Paar
Used for determining the density of the gelatin solution.
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analytical ultracentrifuge
XL-A
Beckman-Coulter
Used for the fabrication of nanoparticle gradient materials by centrifugation.
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UV–vis multiwavelength AUC
Used for monitoring the concentration gradient of nanoparticles.
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Ti double sector cell
0.3 cm titanium centerpiece
Nanolytics
Used for holding the samples during centrifugation.
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HAAKE Falling Ball Viscometer
C
Used for measuring the viscosity of the gelatin solution.
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preparative ultracentrifuge
Optima L-70
Beckman
Used for upscaling the fabrication of nanoparticle gradient materials.
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