Influence of Viscosity on Radial Diffusion of Fluids in Paper Substrates

D. Botta, I. Magos, C. Balan
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引用次数: 1

Abstract

The current increasing interest in portable biosensing platforms led to their development on flexible porous substrates, such as filter paper. As these devices rely on fluid transport under capillary action, without the use of an external force, studies of the diffusion process can provide useful data for optimizing their working capabilities. We present here the results obtained by experimentally studying the radial diffusion of various fluids. The diffusion in filter paper has been recorded for six fluids with different viscosity. For each of them, the displacement of the fluid front has been measured along eight radial directions and then we investigated the possibility of describing this diffusion process using Gillespie’s model.
粘度对纸张介质中流体径向扩散的影响
目前对便携式生物传感平台日益增长的兴趣导致了它们在柔性多孔基板上的发展,如滤纸。由于这些装置依赖于毛细管作用下的流体输送,不使用外力,因此研究扩散过程可以为优化其工作能力提供有用的数据。本文给出了实验研究各种流体径向扩散的结果。记录了6种不同粘度流体在滤纸中的扩散情况。对于每一种情况,我们沿着八个径向方向测量了流体锋的位移,然后我们研究了用Gillespie模型描述这种扩散过程的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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