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Dual-mode stress and mass measurements with chemical and biochemical microcantilever sensor arrays

机译:用化学和生物化学微电机传感器阵列双模应力和质量测量

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In this work, we present dual-mode measurements of chemical and biochemical microcantilever sensor arrays. Multiple microcantilevers are monitored simultaneously in our homemade nanomechanical analyzer. A single stationary optical beam is used to read bending of the microcantilevers and to record their thermal noise. Added mass is calculated from measured thermal noise resonance frequency shift and surface stress is assessed based on static bending. We present experimental data on self-assembling monolayers growth, receptors immobilization, and target molecule detection on microcantilevers. Crosstalk between both measurement modes is possible. We show experimental proofs for such crosstalk and discuss its nature.
机译:在这项工作中,我们呈现了化学和生物化学微静电传感器传感器阵列的双模测量。在我们的自制纳米机械分析仪中同时监测多个微电子。单个固定光束用于读取微膜的弯曲并记录其热噪声。根据测量的热噪声谐振频移和基于静态弯曲来评估表面应力的增加的质量。我们呈现关于自组装单层生长,受体固定化和靶分子检测的实验数据,对微电亡器进行靶分子检测。两个测量模式之间的串扰是可能的。我们为这种串扰显示了实验证据,并讨论了其性质。

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