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MEASUREMENT OF SOLVENT VAPOR ADSORPTION BY POLYDIMETHYLSILOXANE USING QUARTZ CRYSTAL MICROBALANCE

机译:石英晶体微平衡法测定聚二甲基硅氧烷对溶剂蒸气的吸附

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A new micro-electromechanical system (MEMS) gas sensor has been developed using quartz crystal microbalance (QCM) with adsorbent coated in form of nanofibers on the QCM sensor. The nanofibers with fiber diameter typically around 200-300 run increases the specific surface area to enhance adsorption. The QCM is made to oscillate at its natural resonance frequency. Upon exposure of the gas sensor to a given gas, the adsorbed gas onto the nanofibers adds a small mass which changes the natural frequency of the oscillation. By detecting the frequency shift due to adsorption of a given gas, the presence of the gas is detected, and by measuring the frequency shift, the amount of gas being adsorbed at a given pressure and temperature is quantified via the Sauerbrey equation [1].rnA circuit has been developed to read the frequency shift due to the energy dissipation in the QCM coated with Polydimethylsiloxane (PDMS) nanofibers under the environment of several solvent vapors. The developed circuit includes two crystal oscillator circuits, two QCM's which are respectively 1MHz reference QCM and a coated QCM, RC filter and AND gates. The results of the frequency shift between the reference QCM and the coated QCM were recorded on the oscilloscope so as to investigate the relationships between the frequency shift and the amount of vapor adsorbed for different gases.rnUltimately, Volatile Organic Compounds (VOCs) are the target to be monitored and a MEMS based sensor will be developed similar to the present QCM gas sensor discussed herein. This work provides the feasibility study for using nanofiber coating to enhance the adsorbent specific area and a stand-alone QCM sensor for making measurement.
机译:已经开发出一种新的微机电系统(MEMS)气体传感器,该传感器使用石英晶体微天平(QCM),并在QCM传感器上以纳米纤维的形式涂覆了吸附剂。具有大约200-300nm的纤维直径的纳米纤维增加了比表面积以增强吸附。使QCM以其自然谐振频率振荡。当气体传感器暴露于给定的气体时,吸附到纳米纤维上的气体会增加很小的质量,从而改变振荡的固有频率。通过检测由于给定气体的吸附引起的频率偏移,可以检测到气体的存在,并且通过测量频率偏移,可以通过Sauerbrey公式[1]来量化在给定压力和温度下吸附的气体量。 rnA电路已经开发出来,可以读取由于在几种溶剂蒸汽环境下涂有聚二甲基硅氧烷(PDMS)纳米纤维的QCM中的能量耗散而引起的频移。开发的电路包括两个晶体振荡器电路,两个QCM,分别为1MHz参考QCM和一个带涂层的QCM,RC滤波器和与门。将参考QCM和涂层QCM之间的频移结果记录在示波器上,以研究频​​移与不同气体吸附的蒸气量之间的关系。最终,挥发性有机化合物(VOC)是目标与本文讨论的当前QCM气体传感器相似,将开发基于MEMS的传感器并开发基于MEMS的传感器。这项工作提供了使用纳米纤维涂层增加吸附剂比表面积和独立的QCM传感器进行测量的可行性研究。

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