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Fabrication of FIB-CVD Nanotemperature Sensor Probe for Local Temperature Sensing in Water Environments

机译:用于水环境中局部温度传感的FIB-CVD纳米温度传感器探头的制造

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摘要

We fabricated a nanotemperature sensor probe using focused ion beam chemical vapor deposition (FIB-CVD) of tungsten over atomic force microscope (AFM) cantilevers, to be used in local sensing temperature distribution in local area. We present the fabrication approach & modifications for making this sensor probe capable of sensing temperature distributions not only in air but in water environment as well. The sensor probe was calibrated in water using the hot stage of an environmental scanning electron microscope (ESEM). Experimental results demonstrated positive characteristics of the temperature coefficient of resistance (TCR). We also illustrate the response of the sensor to sudden changes in surrounding media. The characteristics of this sensor probe were compared to previously reported temperature sensing devices. The comparison verifies that our sensor is relatively uncomplicated and reliable in fabrication. The capability of sensing temperature in water enables our sensor to be used in a wide range of bio-applications, especially in studying single-cell thermogenesis.
机译:我们使用原子力显微镜(AFM)悬臂上的钨离子聚焦离子束化学气相沉积(FIB-CVD)制备了纳米温度传感器探针,以用于局部检测局部温度。我们提出了制造方法和修改方法,以使这种传感器探头不仅能够检测空气中的温度分布,而且还可以检测水环境中的温度分布。使用环境扫描电子显微镜(ESEM)的热台在水中校准传感器探头。实验结果证明了电阻温度系数(TCR)的积极特性。我们还说明了传感器对周围介质突然变化的响应。将该传感器探头的特性与先前报道的温度传感设备进行了比较。通过比较可以证明我们的传感器相对简单,制造可靠。感测水中温度的能力使我们的传感器可用于广泛的生物应用,尤其是在研究单细胞生热中。

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