研究目的
To evaluate the optical efficiency of tip-based probes for future tip-enhanced optical spectroscopy applications and compare the plasmonic properties between tunable nanoobjects and metallized nanoprobes.
研究成果
The study demonstrates the potential of a new generation of AFM-TERS probes with single plasmonic nano-antennas engineered onto the apex of non-metallic AFM tips, ensuring high field enhancement factors and controllable spectral tunability.
研究不足
The variability of localized surface plasmon resonance wavelength from tip to tip in metal-coated AFM probes due to specific tip apex radius size and/or granularity.
1:Experimental Design and Method Selection:
Developed an experimental setup coupling an AFM head with an achromatic inverted microscope equipped with a TIR objective to measure the spectroscopic scattering response of engineered plasmonic nanostructures.
2:Sample Selection and Data Sources:
Used individual nanofabricated antennas (gold nanodisks/nanocones) on a glass substrate and a series of state-of-the-art gold-coated AFM probes.
3:List of Experimental Equipment and Materials:
Achromatic inverted microscope, AFM head, TIR objective, white light source, spectrometer with CCD detector.
4:Experimental Procedures and Operational Workflow:
Measured scattering spectra under TIR conditions for both TE and TM polarizations, subtracted background noise, and normalized by the reference spectrum.
5:Data Analysis Methods:
Compared experimental results with numerical calculations using finite element simulations (COMSOL software).
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Spectrometer
VS7000
HORIBA Scientific
Used for spectral analysis of the scattered light.
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Achromatic inverted microscope
Olympus IX71
Olympus
Used for measuring the spectroscopic scattering response of engineered plasmonic nanostructures.
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AFM head
BioScope
Brüker
Used for bringing cantilever tips into the evanescent field at the TIR objective/glass substrate interface.
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TIR objective
IMMOIL-F30CC
Olympus
Used in dark-field mode to collect the scattered light for analysis.
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White light source
LDLS EQ-99XFC
ENERGETIQ
Used as an intense and unpolarized excitation light.
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CCD detector
Used for detecting the scattered light.
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