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Surface bound adsorption in a microfluidic T-sensor: Numerical comparison and optimization of 2D and 3D models and of sensor designs

机译:微流体T传感器中的表面结合吸附:2D和3D模型以及传感器设计的数值比较和优化

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摘要

We compare models in two and three spatial dimensions for describing the interplay of convection, diffusion and adsorption in the main channel of a microfluidic T-sensor. A two dimensional model with additional parameters for quantifying film diffusion is shown to describe the sensor equally well but with significantly reduced computational effort as compared to the three dimensional model. Optimal values of the additional parameters are determined and discussed for varied diffusion coefficients and channel heights. The two dimensional model is then applied for studying the impact of varied geometries of a functionalized surface region on the obtained signals. Finally, a specific combination of geometries and measurement times is proposed and computationally verified for achieving almost linear sensor signals over wide concentration ranges.
机译:我们在两个和三个空间维度上比较模型,以描述微流控T传感器主通道中对流,扩散和吸附的相互作用。带有附加参数用于量化薄膜扩散的二维模型显示了同样好的传感器,但是与三维模型相比,其计算量大为减少。确定和讨论附加参数的最佳值,以用于变化的扩散系数和通道高度。然后将二维模型用于研究功能化表面区域的各种几何形状对所获得信号的影响。最后,提出了几何形状和测量时间的特定组合,并进行了计算验证,以在较宽的浓度范围内实现几乎线性的传感器信号。

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