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Facile fabrication of high sensitivity cellulose nanocrystals based QCM humidity sensors with asymmetric electrode structure

机译:基于不对称电极结构的基于高灵敏度纤维素纳米晶体的QCM湿度传感器的便捷制造

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摘要

In this paper, a new approach to enhance the humidity sensitivity of quartz crystal microbalance (QCM) humidity sensor was proposed. By the asymmetric treatment of QCM electrode, the as-fabricated QCM humidity sensor produces an additional frequency shifts associated with the change of dielectric constant of sensitive material besides mass sensitivity. Renewable cellulose nanocrystals (CNCs) as humidity sensing material was deposited on the sensing electrode of QCM. The material characteristics of the synthesized CNCs were examined by TEM, AFM, FTIR and XRD, respectively. The humidity sensing performances of CNCs based QCM humidity sensor, including humidity sensitivity, stability, humidity hysteresis and dynamic response and recovery, were comprehensively studied by using an oscillating circuit method. The results proved that the humidity sensitivity of CNCs based QCM humidity sensor can be effectively enhanced by the asymmetric treatment of QCM electrode structure. Further, the underlying sensitivity enhancement mechanism was analyzed and discussed using an equivalent circuit analysis method. This work highlights that QCM transducer with an asymmetric sensitive electrode structure is a promising approach to improve the humidity sensitivity, and CNCs is also a promising material for humidity sensing.
机译:本文提出了一种提高石英微天平(QCM)湿度传感器湿度敏感性的新方法。通过对QCM电极的不对称处理,所制造的QCM湿度传感器除了质量敏感度外,还产生了与敏感材料介电常数变化相关的附加频移。作为湿度传感材料的可再生纤维素纳米晶体(CNC)沉积在QCM的传感电极上。分别通过TEM,AFM,FTIR和XRD检查了合成CNC的材料特性。通过使用振荡电路方法,全面研究了基于CNC的QCM湿度传感器的湿度传感性能,包括湿度灵敏度,稳定性,湿度滞后以及动态响应和恢复。结果表明,通过对QCM电极结构进行不对称处理,可以有效提高基于CNC的QCM湿度传感器的湿度敏感性。此外,使用等效电路分析方法对基础的灵敏度增强机制进行了分析和讨论。这项工作强调了具有不对称敏感电极结构的QCM传感器是提高湿度灵敏度的一种有前途的方法,而CNC控制器也是一种用于湿度感测的有希望的材料。

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