研究目的
Investigating the use of gold nanostars (AuNSs) and polylactic acid (PLA) films for microscale modification through thermoplasmonic effects, enabling precise control of engraving processes and applications in surface enhanced Raman spectroscopy and anti-counterfeiting technologies.
研究成果
The thermoplasmonic maskless lithography technique successfully transfers desired patterns into substrates using AuNSs and PLA films. The method allows for the production of luminescent patterns and SERS-active substrates, with potential applications in optical devices and anti-counterfeiting technologies.
研究不足
The technique requires precise control of laser power densities and is sensitive to the thermal conductivity of the substrate. High thermal conductivity substrates like silicon may quench the sintering process necessary for pattern retention.
1:Experimental Design and Method Selection:
The study utilizes the photothermal properties of AuNSs to locally modify PLA films. A focused NIR laser (976 nm) excites the plasmon resonance of AuNSs, generating heat that modifies the PLA film.
2:Sample Selection and Data Sources:
Thin PLA films are produced and covered with AuNSs. Er3+ doped upconverting nanoparticles (UCNPs) are embedded into the PLA layer for temperature probing.
3:List of Experimental Equipment and Materials:
A solid-state NIR laser, PLA films, AuNSs, UCNPs, and a homemade CNC system for laser writing.
4:Experimental Procedures and Operational Workflow:
The laser writing beam is focused on the sample to transfer 2D patterns. The unexposed material is dissolved in acetone, and the sample is washed with ethanol.
5:Data Analysis Methods:
The local temperature is probed using the luminescence of UCNPs, and the morphology of the modified films is characterized by SEM and AFM.
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Cary 8454
8454
Agilent Technologies
UV-Visible spectrophotometry
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Dektak 150
150
Veeco
Perfilometry measurements
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BL976-PAG900 FBG stabilized laser
BL976-PAG900
ThorLabs
Excitation of the plasmon resonance of AuNSs and upconversion luminescent process in UCNPs
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QEPro spectrometer
QEPro
Ocean Optics
Acquisition of emission spectra of UCNPs
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FEI Quanta 650 FEG microscope
Quanta 650 FEG
FEI
Scanning electron microscopy imaging
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JEM 2100
JEM 2100
Jeol
Transmission electron microscopy imaging
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Phaser D2 diffractometer
Phaser D2
Bruker
X-ray diffraction analysis
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Nanopartica SZ-100 DLS
SZ-100
Horiba
Dynamical light scattering measurements
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XploRA
XploRA
Horiba
Micro-Raman spectrometer
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