石英晶体微天平(QCM)在液态环境下的应用一直由于数据分析复杂而受到限制。最近,我们提出了"固化水层"模型(SLL)以简化QCM数据分析过程。本文进一步提供了SLL模型的有关数据。根据SLL模型,1 Hz QCM频率信号对应于0.18 nm SLL层厚度的变化,而大多数商业的QCM均可以达到该精度。因此,根据SLL模型设计的检测方案将具有很高的灵敏度。QCM作为生物传感器的应用也得以拓展,可以相信SLL模型将大大增强QCM的分析能力。
Quartz crystal microbalance(QCM) has many advantages in research,but the data interpretation has hindered its applications in many research fields,especially for application in liquid.Recently,we proposed’solidified liquid layer’(SLL) model to simplify the data analysis.In this article,some missing evidences are provided to demonstrate the SLL model.The thickness result from ellipsometry accords with the result from the SLL model.The SLL model predicts that 1 Hz signal respond to a 0.18-nm change of TSLL,which greatly improve the resolution of QCMs in liquid.These researches effectively improve our understanding in the nature of AuS bond breakage and its breakage process.Our results show that the SLL model will improve the applications of QCM in many fields.