Liquid Mass Sensing Using Resonating Microplates under Harsh Drop and Spray Conditions

Said Mahajne, D. Guetta, Stella Lulinsky, S. Krylov, Y. Linzon
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引用次数: 15

Abstract

We have performed in situ real time mass sensing of deposited liquid volatile droplets and sprays using plate-like microstructures, with robust and reusable performance attained over harsh conditions and multiple cycles of operation. A home-built electrooptical sensing system in ambient conditions has been used. The bimorph effect on the resonant frequency of altered mass loading, elasticity, and strain had been carefully compared, and the latter were found to be negligible in the presence of nonviscous liquids deposited on top of our microplate devices. In resonant mode, the loaded mass has been estimated from measured resonant frequency shifts and interpreted from a simple, uniformly deposited film model. A minimum submicrogram detectable mass was estimated, suggesting the system’s potential for robust, fast, and reusable sensing capabilities, in the presence of volatile liquids under harsh operation conditions.
在恶劣滴淋条件下使用谐振微孔板进行液体质量传感
我们已经使用板状微结构对沉积的液体挥发性液滴和喷雾进行了现场实时质量传感,在恶劣条件和多次循环操作下获得了强大的可重复使用性能。本文采用了一种自制的环境条件下的光电传感系统。我们仔细比较了双晶型对改变质量载荷、弹性和应变的共振频率的影响,发现后者在沉积在微孔板装置顶部的非粘性液体存在时可以忽略不计。在谐振模式下,载荷质量由测量的谐振频移估计,并由简单的均匀沉积薄膜模型解释。据估计,该系统的最小可检测质量为亚微克,这表明该系统在恶劣操作条件下存在挥发性液体时,具有强大、快速和可重复使用的传感能力。
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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