Publication | Closed Access
Microfluidic single-particle chemical analyzer with dual-comb coherent Raman spectroscopy
27
Citations
13
References
2018
Year
Spectroscopic MethodMedicineSpectroscopyNatural SciencesHigh ThroughputAnalytical MicrosystemsSurface-enhanced Raman ScatteringLab-on-a-chipBiomedical EngineeringChemistryClinical ChemistryLabel-free Single-particle AnalyzerMicrofluidicsLight Scattering SpectroscopySingle-molecule DetectionBiophysicsLabel-free Particle Analysis
Label-free particle analysis is a powerful tool in chemical, pharmaceutical, and cosmetic industries as well as in basic sciences, but its throughput is significantly lower than that of fluorescence-based counterparts. Here we present a label-free single-particle analyzer based on broadband dual-comb coherent Raman scattering spectroscopy operating at a spectroscopic scan rate of 10 kHz. As a proof-of-concept demonstration, we perform broadband coherent anti-Stokes Raman scattering measurements of polystyrene microparticles flowing on an acoustofluidic chip at a high throughput of >1000 particles per second. This high-throughput label-free particle analyzer has the potential for high-precision statistical analysis of a large number of microparticles including biological cells.
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