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Nanofluidic flowmeter using carbon sensing element

机译:使用碳感测元件的纳米流体流量计

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The field of nanofluidics dealing with nL fluids is growing, and sensors for monitoring ever smaller flow rates (/spl simL/min) are needed. This paper presents a new, sensitive micromachined thermal sensor for measuring flow rates. The integrated sensor uses a high-TCR (temperature coefficient of resistance) carbon sensing element obtained from ion-implanted parylene. The ion-implanted carbon element has a high temperature coefficient of resistance of -2%//spl deg/C and is embedded in a freestanding microchannel suspended from the substrate. The developed sensor has been characterized for flow measurements with a volumetric flow sensitivity of 380 /spl mu/V/(nl/min) under a constant current bias with a power consumption of only 28 /spl mu/W. To our knowledge, this is the first such nanofluidic carbon flow sensor and its sensitivity is better than any of flow sensors reported to date.
机译:涉及nL流体的纳米流体领域正在不断发展,因此需要用于监测越来越小的流速(/ spl sim / nL / min)的传感器。本文提出了一种用于测量流量的新型,灵敏的微机械热传感器。集成传感器使用从离子注入聚对二甲苯中获得的高TCR(电阻温度系数)碳传感元件。离子注入的碳元素的高温电阻系数为-2%// spl deg / C,并嵌入从基板悬垂的独立微通道中。研发的传感器的特征是用于流量测量,在恒定电流偏置下的体积流量灵敏度为380 / spl mu / V /(nl / min),功耗仅为28 / spl mu / W。据我们所知,这是第一个这样的纳米流体碳流量传感器,其灵敏度比迄今为止报道的任何流量传感器都要好。

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