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采用电沉积法研究泛音模式下石英晶体微天平的质量灵敏度。

Exploration of the Mass Sensitivity of Quartz Crystal Microbalance under Overtone Modes Using Electrodeposition Method.

机构信息

School of Integrated Circuits & Beijing National Research Center for Information Science and Technology (BNRist), Tsinghua University, Beijing 100084, China.

Institut für Informatik VI, Technische Universität München, München 85748, Germany.

出版信息

Anal Chem. 2022 Apr 19;94(15):5760-5768. doi: 10.1021/acs.analchem.1c04648. Epub 2022 Apr 4.

Abstract

With the in-depth application of quartz crystal microbalance (QCM) sensors in the fields of science and engineering, there is an urgent need for QCM sensors with high mass sensitivity. The mass sensitivity of a QCM is closely related to its resonance frequency, and the high resonance frequency leads to improve its mass sensitivity. However, the resonance frequency of a QCM resonator cannot be increased all the time due to the fragility of quartz wafer and the limits of energy trapping effect. Few studies are associated with mass sensitivity of a QCM resonator under overtone modes. Herein, we propose to make a QCM resonator work in its -th overtone ( = 3, 5, 7, 9 in this study) mode to increase its resonance frequency during operating. Thereby, the purpose of improving QCM mass sensitivity is achieved, and the mass sensitivity of a QCM working in the -th overtone mode can be called as -th overtone mass sensitivity. Then, the -th overtone mass sensitivity of a QCM sensor is measured by an electrodeposition method. The experimental results show that the -th overtone mass sensitivity of a QCM is a bit more than times that of the fundamental mass sensitivity, and it is consistent with the theoretical calculation results. The application of overtone mass sensitivity will greatly improve the sensitivity of QCM sensors, which is very attractive for the research fields that require QCM sensors with high sensitivity.

摘要

随着石英晶体微天平(QCM)传感器在科学和工程领域的深入应用,人们迫切需要具有高质量灵敏度的 QCM 传感器。QCM 的质量灵敏度与其共振频率密切相关,而高共振频率可提高其质量灵敏度。然而,由于石英晶片的易碎性和能量俘获效应的限制,QCM 谐振器的共振频率不能一直提高。很少有研究涉及倍频模式下 QCM 谐振器的质量灵敏度。在此,我们提出使 QCM 谐振器在其第次泛音(在本研究中为 = 3、5、7、9)模式下工作,以在工作过程中增加其共振频率。从而达到提高 QCM 质量灵敏度的目的,将 QCM 在倍频模式下工作的质量灵敏度称为倍频质量灵敏度。然后,采用电沉积法测量 QCM 传感器的倍频质量灵敏度。实验结果表明,QCM 的倍频质量灵敏度比基频质量灵敏度约高 倍,与理论计算结果一致。倍频质量灵敏度的应用将大大提高 QCM 传感器的灵敏度,这对于需要高灵敏度 QCM 传感器的研究领域非常有吸引力。

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