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Characterization and Preliminary Demonstration of Microcantilever Array Integrated Sensors.

机译:微悬臂阵列集成传感器的特性和初步演示。

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摘要

I characterize the behavior of microcantilever arrays which utilize the in-plane photonic transduction that I've previously developed and evaluate the performance of the microcantilever arrays in simple sensing scenarios with integrated microfluidics. First the thermal responses of microcantilevers with a variety of patterns of deposited gold films are compared. Using a scanning electron microscope, I observe the deflection thermal sensitivities of 300 μm long microcantilevers to be -170.82 nm/K for a full gold coating and -1.93 nm/K for no gold coating. Using the photonic transduction method I measure a thermal sensitivity of -1.46 nm/K for a microcantilever array with no gold.;A microcantilever array integrated with microfluidics is exposed to a solution of bovine serum albumin (BSA) followed by solutions of various pH's. In all cases I observe a previously unreported transient deflection response. We find that the transient response is due to temporary nonuniform concentration distributions. In response to nonspecific binding of BSA, I observe a transient surface stress of -0.23 mN/m that agrees well with the -0.225 mN/m predicted by simulations. We hypothesize that the deflection response to pH changes is due to stress generated by conformational changes of bound BSA.;The deflection response of an integrated microcantilever array to different types of flow and different flow rates is observed. Simulations of the deflection response match well with experimental results but disagree at higher flow rates. For flow rates greater than 200 μL/min, the limitation of the differential signal's dynamic range becomes apparent. We then investigate flow driven by an on-chip reciprocating reservoir pump. We demonstrate that it is possible to use the reciprocating pump to achieve high flow rates while making deflection measurements in-between reservoir actuations.;Investigations of the microcantilever array noise show that flicker noise dominates below 10 Hz, while above 10 Hz, readout noise dominates. A minimum deflection noise density of 15 pW/Hz½ is achieved. To improve the signal-to-noise ratio I develop algorithms for a digital lock-in amplifier with a digital phase-lock loop. In simulation the lock-in amplifier is able to improve the SNR by up to a factor of 6000, and self-lock to a noisy carrier signal without an external reference signal.
机译:我描述了利用我以前开发的平面内光子转导的微悬臂阵列的行为,并在具有集成微流体的简单传感场景中评估了微悬臂阵列的性能。首先,比较具有各种沉积金膜图案的微悬臂梁的热响应。使用扫描电子显微镜,我观察到300μm长的微悬臂梁的偏转热敏度对于全金涂层为-170.82 nm / K,对于无金涂层为-1.93 nm / K。我使用光子转导方法测得无金的微悬臂阵列的热灵敏度为-1.46 nm / K;将集成有微流体的微悬臂阵列暴露于牛血清白蛋白(BSA)溶液,然后暴露于各种pH值的溶液中。在所有情况下,我都观察到以前未报告的瞬态偏转响应。我们发现瞬态响应是由于暂时的非均匀浓度分布。针对BSA的非特异性结合,我观察到-0.23 mN / m的瞬态表面应力,与模拟预测的-0.225 mN / m吻合得很好。我们假设对pH变化的偏转响应是由于结合的BSA的构象变化所产生的应力引起的。观察到集成微悬臂阵列对不同类型的流量和不同流速的偏转响应。挠度响应的模拟与实验结果非常吻合,但在更高的流速下却不一致。对于大于200μL/ min的流速,差分信号动态范围的限制变得显而易见。然后,我们研究由片上往复式储油泵驱动的流量。我们证明有可能使用往复泵实现高流速,同时在储层驱动之间进行挠度测量。;对微悬臂阵列噪声的研究表明,闪烁噪声在10 Hz以下占主导地位,而在10 Hz以上在读数噪声中占主导地位。 。最小偏转噪声密度为15 pW / Hz½已完成。为了提高信噪比,我开发了具有数字锁相环的数字锁相放大器的算法。在仿真中,锁相放大器能够将信噪比提高多达6000倍,并且无需外部参考信号即可自锁至噪声载波信号。

著录项

  • 作者

    Anderson, Ryan R.;

  • 作者单位

    Brigham Young University.;

  • 授予单位 Brigham Young University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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