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Enhancing the sensitivity of microcantilever-based sensors via geometry modification

机译:通过几何修改提高基于微悬臂梁的传感器的灵敏度

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Microcantilever based sensors have been being widely used for measuring or detecting various physical conditions, chemical agents and biological species. Researchers are continuing to focus on enhancing the sensitivity of these devices toward improving their performance and applicability. In this paper, a numerical study is performed to assess the influence of microcantilever geometry on sensitivity to improve these devices for better detection of hazardous biological agents in liquid environments. Modal analyses were performed on microcantilevers of different geometries and shapes using ANSYS software and compared to the basic rectangular shaped microcantilever structures employed by most researchers. These structures all possessed a 50 μm length, 0.5 μm thickness and 25 μm width where the cantilever is clamped to the substrate, and were analyzed for their basic resonance frequency as well as the frequency shift for the attachment of a 0.285 picogram of mass attached on their surfaces. These numerical results are compared for the improvement of the sensitivity for MEMS based microcantilever sensor, which is particularly promising for biosensor applications. Of the geometries studied a few were found to possess a significant increase in mass sensitivity over regular rectangular shaped cantilever beam structures of similar dimensions. In particular, it was found that geometries possessing larger clamping widths and/or reduced effective mass at the free end yielded enhanced sensitivity. A triangular shape was found to increase mass sensitivity an order of magnitude over standard rectangular shapes.
机译:基于微悬臂梁的传感器已被广泛用于测量或检测各种物理条件,化学试剂和生物物种。研究人员将继续致力于提高这些设备的灵敏度,以改善其性能和适用性。在本文中,进行了一项数值研究,以评估微悬臂几何形状对灵敏度的影响,以改进这些设备,以便更好地检测液体环境中的有害生物制剂。使用ANSYS软件对不同几何形状和形状的微悬臂梁进行了模态分析,并将其与大多数研究人员采用的基本矩形微悬臂梁结构进行了比较。这些结构的长度均为50μm,厚度为0.5μm,宽度为25μm,其中悬臂固定在基板上,并对其基本共振频率以及附着在其上的质量为0.285皮克的频率进行了分析。他们的表面。比较这些数值结果以改善基于MEMS的微悬臂梁传感器的灵敏度,这对于生物传感器应用特别有希望。在所研究的几何形状中,发现有一些比类似尺寸的规则矩形悬臂梁结构具有更大的质量敏感性。特别地,发现在自由端处具有较大夹持宽度和/或减小的有效质量的几何形状产生增强的灵敏度。发现三角形比标准矩形将质量敏感性增加一个数量级。

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