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基于 QCM 上沉积的黏弹花瓣状结构硬脂酸功能层的阻抗分析。

The Impedance Analysis of a Viscoelastic Petalous Structured Stearic Acid Functional Layer Deposited on a QCM.

机构信息

Department of Physics, Faculty of Mathematics and Natural Sciences, Universitas Brawijaya, Malang 65145, Indonesia.

出版信息

Sensors (Basel). 2022 Oct 3;22(19):7504. doi: 10.3390/s22197504.

Abstract

A functional layer is crucial in a QCM sensor, to immobilize target molecules. The microstructure of the layer determines the sensitivity of the sensor. On the other hand, the microstructure also affects the loading of the sensor. In this study, impedance analysis was used to investigate the relationship between the microstructure and the viscoelastic properties of a petalous stearic acid (SA) functional layer. The SA layer was deposited using a vacuum thermal evaporation technique. Different petalous pillar structures in the elastic layer were generated by varying the deposition time. Analysis showed that the growth of the embedded pillar structures dramatically reduced the conductance and increased the bandwidth. The energy dissipation during the vibration could be related to the interaction between the pillars and the elastic matrix.

摘要

功能层对于 QCM 传感器至关重要,它可以固定目标分子。该层的微观结构决定了传感器的灵敏度。另一方面,微观结构也会影响传感器的负载。在这项研究中,我们使用阻抗分析来研究花瓣状硬脂酸(SA)功能层的微观结构和黏弹性之间的关系。SA 层是通过真空热蒸发技术沉积的。通过改变沉积时间,在弹性层中生成不同的花瓣状柱状结构。分析表明,嵌入式柱状结构的生长显著降低了电导率并增加了带宽。振动过程中的能量耗散可能与柱子和弹性基质之间的相互作用有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58a6/9570775/9fdc669e61b8/sensors-22-07504-g001.jpg

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