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首页> 外文期刊>Journal of Micromechanics and Microengineering >High sensitivity piezoresistive cantilever design and optimization for analyte-receptor binding
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High sensitivity piezoresistive cantilever design and optimization for analyte-receptor binding

机译:高灵敏度压阻悬臂设计和分析物-受体结合的优化

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The mechanical design and optimization of piezoresistive cantilevers for biosensing applications is studied using finite element analysis. The change of relative resistivity of piezoresistive microcantilevers is analyzed in the presence of the chemical reaction at the receptor surface under the condition of oscillating flow. Chemo-mechanical binding forces have been analyzed in order to understand issues of saturation over the cantilever surface. Furthermore, the optimum design using finite element modeling is achieved by modifying the factors pertaining to the geometry of the microcantilevers under the condition of bio-binding. The introduction of stress concentration regions (SCRs) during cantilever fabrication has been discussed, which greatly enhances the detection sensitivity through increased surface stress. Finally, the optimum SCR modified 'C' piezocantilever system for biosensing is designed and the optimal parameters are set for high sensitivity. [References: 14]
机译:使用有限元分析研究了用于生物传感应用的压阻悬臂的机械设计和优化。在振荡流动条件下,在受体表面存在化学反应的情况下,分析了压阻微悬臂梁的相对电阻率的变化。为了理解悬臂表面的饱和问题,已经分析了化学机械结合力。此外,通过修改与生物结合条件下微悬臂梁的几何形状有关的因素,可以实现使用有限元建模的最佳设计。已经讨论了在悬臂制造过程中应力集中区域(SCR)的引入,它通过增加表面应力来大大提高检测灵敏度。最后,设计了用于生物传感的最佳SCR改性“ C”型压电悬臂梁系统,并为高灵敏度设置了最佳参数。 [参考:14]

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