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Novel fiber-tip micro flowmeter based on optofluidic microcavity filled with silver nanoparticles solutions
Jinjian Li1, Jian Qu1, Yi Liu2
1Harbin Institute of Technology, Harbin, Heilongjiang, China.
Nanophotonics (Berlin, Germany)
|December 5, 2024
Summary
This study introduces a novel fiber-tip micro flowmeter using silver nanoparticle solutions to measure microfluidic flow rates. The device offers high sensitivity and robustness for applications in tiny spaces.
Area of Science:
- Optofluidics
- Nanotechnology
- Optical Sensing
Background:
- Accurate measurement of microfluidic flow is crucial in various scientific and industrial fields.
- Existing micro flowmeters often face limitations in sensitivity, robustness, or applicability in confined spaces.
- Optofluidic systems offer unique advantages for developing miniaturized sensing devices.
Purpose of the Study:
- To propose and demonstrate a novel fiber-tip micro flowmeter.
- To utilize the opto-thermal effect of silver nanoparticle solutions (SNS) for flow sensing.
- To achieve high sensitivity and robustness in micro-scale flow rate measurements.
Main Methods:
- Fabrication of a fiber-tip microcavity filled with SNS.
- Heating the SNS using a continuous wave (CW) fiber laser to induce an opto-thermal effect.
- Monitoring the shift in Fabry-Perot interference spectrum dips caused by temperature-induced refractive index changes in SNS.
- Correlating spectral shifts with microfluidic flow velocity.
Main Results:
- The developed sensor exhibits a maximum flow rate sensitivity of 1.5 nm/(μL/s) over a range of 0-5 μL/s.
- A low detection limit (DL) of 0.08 μL/s was achieved.
- The fiber-tip micro flowmeter demonstrated strong robustness and suitability for measurements in confined spaces.
- The silver nanoparticle solution showed excellent biological compatibility.
Conclusions:
- The proposed optofluidic micro flowmeter offers a sensitive, robust, and miniaturized solution for microfluidic flow rate measurement.
- The device leverages the opto-thermal properties of silver nanoparticles for precise sensing.
- Potential applications include haematology, oil prospecting, ocean dynamics, and drug research due to its performance and biocompatibility.

