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Y-cut Quartz Resonator based Calorimetric Sensor

机译:基于Y切割的石英谐振器的量油传感器

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Monitoring of chemical and biochemical reactions such as neutralization reactions, antibody-antigen binding events, and enzyme catalyzed reactions, etc. can be achieved using calorimetric (bio)chemical sensors. A calorimeter array consisting of a thin film thermopile as temperature sensor integrated with microfluidic channels has already been demonstrated recently. In order to improve the sensitivity of the device, a temperature sensing element based on Y-cut quartz is proposed. The temperature-frequency calibration of a 125 (mu)m thick Y-cut quartz resonator has been experimentally measured in the 22-60 deg C temperature range. Preliminary measurements of the neutralization reaction have been performed using the resonator to demonstrate the potential of the device for calorimetric sensing applications. It can be concluded that upon optimization of the device for thermal performance and appropriate compensation of mass loading and viscoelastic effects using a differential arrangement, ultrasensitive calorimetric measurements can be performed using such a device.
机译:使用量热(BIO)化学传感器可以实现对化学和生化反应的监测,例如中和反应,抗体结合事件和酶催化反应等。最近已经证明了由薄膜热电孔组成的热量计阵列,作为与微流体通道集成的温度传感器。为了提高装置的灵敏度,提出了一种基于Y切割石英的温度传感元件。 125(mu)厚的Y切割石英谐振器的温度校准已经在22-60℃温度范围内进行实验测量。使用谐振器进行中和反应的初步测量,以证明用于量热传感应用的装置的电位。可以得出的结论是,在优化用于热性能的装置和使用差分布置的适当补偿和粘弹性效果的适当补偿,可以使用这种装置进行超细量热测量。

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