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Silicon Field Effect Transistors as Dual-Use Sensor-Heater Hybrids

机译:硅场效应晶体管作为传感器和加热器的双重用途

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摘要

We demonstrate the temperature mediated applications of a previously proposed novel localized dielectric heating method on the surface of dual purpose silicon field effect transistor (FET) sensorheaters and perform modeling and characterization of the underlying mechanisms. The FETs are first shown to operate as electrical sensors via sensitivity to changes in pH in ionic fluids. The same devices are then demonstrated as highly localized heaters via investigation of experimental heating profiles and comparison to simulation results. These results offer further insight into the heating mechanism and help determine the spatial resolution of the technique. Two important biosensor platform applications spanning different temperature ranges are then demonstrated: a localized heat-mediated DNA exchange reaction and a method for dense selective functionalization of probe molecules via the heat catalyzed complete desorption and reattachment of chemical functionalization to the transistor surfaces. Our results show that the use of silicon transistors can be extended beyond electrical switching and field-effect sensing to performing localized temperature controlled chemical reactions on the transistor itself.
机译:我们演示了在双用途硅场效应晶体管(FET)传感器加热器表面上先前提出的新型局部介电加热方法的温度介导应用,并执行了基本机制的建模和表征。首先显示出FET通过对离子液体中pH值变化的敏感性来充当电传感器。然后,通过研究实验加热曲线并将其与仿真结果进行比较,将相同的设备展示为高度局部化的加热器。这些结果提供了对加热机理的进一步了解,并有助于确定该技术的空间分辨率。然后展示了跨越不同温度范围的两个重要的生物传感器平台应用:局部热介导的DNA交换反应和通过热催化将化学功能化完全脱附和重新附着到晶体管表面的探针分子的密集选择性功能化的方法。我们的结果表明,硅晶体管的使用可以扩展到电气开关和场效应感测之外,还可以对晶体管本身进行局部温度控制的化学反应。

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