首页> 外文期刊>Analytical chemistry >QCM OPERATION IN LIQUIDS - AN EXPLANATION OF MEASURED VARIATIONS IN FREQUENCY AND Q FACTOR WITH LIQUID CONDUCTIVITY
【24h】

QCM OPERATION IN LIQUIDS - AN EXPLANATION OF MEASURED VARIATIONS IN FREQUENCY AND Q FACTOR WITH LIQUID CONDUCTIVITY

机译:液体中的QCM操作-带有电导率的频率和Q因子的测量变化的解释

获取原文
获取原文并翻译 | 示例
       

摘要

Recently, several reports have shown that when one side of a quartz crystal microbalance (QCM) is exposed to a liquid, the parallel (but not the series) resonant frequency is influenced by the conductivity and dielectric constant of the liquid, The effect is still controversial and constitutes a serious complication in many applications of the QCM in liquid environments, One suggestion has been that acoustically induced surface charges couple to charged species in the conducting liquid, To explore this effect, we have measured the parallel and the series mode resonance frequencies, and the corresponding Q factors, for a QCM with one side facing a liquid, These four quantities have all been measured versus liquid conductivity, using a recently developed experimental setup, It allows the simultaneous measurement of the resonant frequency and the Q factor of aa oscillating quartz crystal, intermittently disconnected from the driving circuit, Based on these results, a simple model together with an equivalent circuit for a quartz crystal exposed to a liquid is presented, The analysis shows that-it is not necessary to infer the existence of surface charges (or other microscopic phenomena such as electrical double layers) to account for the influence of the liquids electrical properties on the resonant frequency, Our results show that the contacting conductive liquid, in effect, enlarges the electrode area on the liquid side and thereby changes the parallel resonant frequency. By proper design of the QCM measurement, perturbing effects due to the liquid's electrical properties can be circumvinted.
机译:最近,一些报道表明,当石英微天平(QCM)的一侧暴露于液体中时,液体的电导率和介电常数会影响并联(而不是串联)共振频率,这种影响仍然存在。有争议的并且在液体环境中的QCM的许多应用中构成了严重的复杂性。一个建议是,声感应的表面电荷与导电液体中的带电物质耦合,为了探讨这种影响,我们测量了并联和串联模式的共振频率对于一侧面向液体的QCM,以及相应的Q因子,已使用最新开发的实验装置测量了这四个量与液体电导率的关系,它可以同时测量谐振频率和aa的Q因子振荡石英晶体,间歇性地从驱动电路断开,基于这些结果,一个简单的模型合在一起分析表明,没有必要推断表面电荷(或其他微观现象,例如双电层)的存在以说明液体的影响,该等效电路用于暴露于液体的石英晶体。我们的结果表明,接触导电液体实际上会增大液体一侧的电极面积,从而改变并联谐振频率。通过适当设计QCM测量,可以避免由于液体的电特性引起的干扰效应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号