Publication | Closed Access
Photothermal Imaging of Nanometer-Sized Metal Particles Among Scatterers
971
Citations
12
References
2002
Year
EngineeringMetal NanoparticlesMicroscopyAmbient Optical DetectionMetallic NanomaterialsChemistryLight Scattering SpectroscopyNanometrologyNanosensorPhotothermal ImagingBiophysicsPlasmonic MaterialMaterials ScienceNanotechnologyPhotothermal ImageBiophotonicsOptical Particle SizingApplied PhysicsBiomedical ImagingMedicineGold ColloidsOptical Sensor
Ambient optical detection of labeled molecules is limited for fluorescent dyes by photobleaching and for semiconducting nanoparticles by "blinking" effects. Because nanometer-sized metal particles do not optically bleach, they may be useful optical labels if suitable detection signals can be found. We demonstrate far-field optical detection of gold colloids down to diameters of 2.5 nanometers with a photothermal method that combines high-frequency modulation and polarization interference contrast. The photothermal image is immune to the effects of scattering background, which limits particle imaging through Rayleigh scattering to diameters larger than 40 nanometers.
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