超声波传感器:测量分子流体粘度和密度的快速无损系统

Biosensors Pub Date : 2024-07-16 DOI:10.3390/bios14070346
Romina Muñoz, Juan-Francisco Fuentealba, Sebastián Michea, Paula A. Santana, Juan Ignacio Martinez, Nathalie Casanova-Morales, Vicente Salinas-Barrera
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引用次数: 0

摘要

本研究介绍了超声波传感器的设计和开发,它是表征流体和生物流体特性的基本工具。分析的主要重点是测量系统的电参数,这些参数与溶液的密度和粘度相关,样品量为微升,时间分辨率高(每秒最多 1 个数据点)。使用这种传感器可以快速、无损地评估沉积在其自由表面上的液体的粘度和密度。测量的基础是获得阻抗随频率变化的曲线以及相位差(电流和电压之间)随频率变化的曲线。这样,传感器的特征参数,如共振频率、相位、最小阻抗和共振系统的品质因数,就可以描述所研究流体的密度和粘度变化。研究结果表明,传感器能够识别对粘度敏感的两个参数和对密度敏感的两个参数。作为概念验证,对牛白蛋白的展开进行了研究,得出了反映其在尿素存在下展开动力学的曲线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultrasonic Sensor: A Fast and Non-Destructive System to Measure the Viscosity and Density of Molecular Fluids
This study presents the design and development of an ultrasonic sensor as a fundamental tool for characterizing the properties of fluids and biofluids. The analysis primarily focuses on measuring the electrical parameters of the system, which correlate with the density and viscosity of the solutions, in sample volumes of microliters and with high temporal resolution (up to 1 data point per second). The use of this sensor allows the fast and non-destructive evaluation of the viscosity and density of fluids deposited on its free surface. The measurements are based on obtaining the impedance versus frequency curve and the phase difference curve (between current and voltage) versus frequency. In this way, characteristic parameters of the transducer, such as the resonance frequency, phase, minimum impedance, and the quality factor of the resonant system, can characterize variations in density and viscosity in the fluid under study. The results obtained revealed the sensor’s ability to identify two parameters sensitive to viscosity and two parameters sensitive to density. As a proof of concept, the unfolding of the bovine albumin protein was studied, resulting in a curve that reflects its unfolding kinetics in the presence of urea.
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