Electrical Engineering Department (ENE), University of Brasilia, Brasilia 70910-900, Brazil.
Polytechnic School, University of São Paulo (USP), São Paulo 05508-010, Brazil.
Sensors (Basel). 2022 Jul 2;22(13):4999. doi: 10.3390/s22134999.
In this work, we investigated a platform for real-time emulsion droplet detection and size measurement in optofluidic platforms. An 8.2 µm core diameter input optical fiber and a multi-mode Gradient Refractive Index (GRIN) output fiber were integrated into an acrylic microfluidic channel platform consisting of three layers. Water-in-oil emulsions were investigated, since relevant applications have emerged in the recent past for these types of emulsions, such as drug encapsulation as well as droplet-based Polymerase Chain Reaction (PCR) amplification of DNA, among others. The main contribution of this work is in understanding the main physical phenomena (i.e., total internal reflection, refraction, and interference) behind the complex transmittance pattern obtained for these droplets. For this purpose, a frequency domain electromagnetic wave propagation modelling of the structure using the Finite Element Method (FEM) was used along with experimental measurements.
在这项工作中,我们研究了一种用于实时乳滴检测和尺寸测量的光流控平台的方法。一根 8.2μm 芯径输入光纤和一根多模梯度折射率(GRIN)输出光纤被集成到一个由三层组成的丙烯酸微流控通道平台中。我们研究了油包水乳状液,因为最近这类乳状液在药物包封以及基于液滴的 DNA 聚合酶链反应(PCR)扩增等方面的相关应用已经出现。这项工作的主要贡献在于理解对于这些液滴所获得的复杂透射模式背后的主要物理现象(即全内反射、折射和干涉)。为此,使用有限元法(FEM)对结构进行了频域电磁波传播建模,并结合实验测量进行了研究。