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LiNbO3 integrated system for opto-microfluidic sensing
Journal article   Open access   Peer reviewed

LiNbO3 integrated system for opto-microfluidic sensing

G Bettella, Riccardo Zamboni, G Pozza, A Zaltron, C Montevecchi, M Pierno, G Mistura, C Sada, L Gauthier-Manuel and M Chauvet
Sensors and Actuators B: Chemical, Vol.282, pp.391-398
282
01/03/2019
Handle:
https://hdl.handle.net/10863/52089

Abstract

Microfluidic Droplet Optical trigger Waveguide Lithium niobate Lab-on-a-chip
In this work, we realized and tested an integrated opto-microfluidics platform entirely made on lithium niobate (LiNbO3) crystals, able to detect the single droplet passage and estimate its size without the need of any imaging processing. It is based on the coupling of a self-aligned integrated optical stage, made of an array of optical waveguides, to a microfluidic circuit such as a T-junction or Cross-junction engraved in the same substrate. The platform presented high quality performances in terms of optical triggering, reproducibility and stability in time, allowing in real-time data analysis. The comparison with standard approaches using microscopes and fast camera imagining acquisition and relative post-processing, showed an increased capability better than 50%. The demonstrated feasibility of integration of these two stages will allow the realization of a Lab-On-a-Chip on a monolithic substrate of lithium niobate, exploiting its multiple applications for manipulation of droplets.
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url
https://doi.org/10.1016/j.snb.2018.10.082View

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