Biomedical Engineering Research Group (GIBEC), EIA University, Envigado 055428, Colombia.
Research Centre for Biomedical Engineering (RCBE), City University of London, London EC1V 0HB, UK.
Sensors (Basel). 2018 Oct 25;18(11):3618. doi: 10.3390/s18113618.
Phononic crystals are periodic composite structures with specific resonant features that are gaining popularity in the field as liquid sensors. The introduction of a structural defect in an otherwise periodic regular arrangement can generate a resonant mode, also called defect mode, inside the characteristic band gaps of phononic crystals. The morphology, as well as the frequency in which these defect modes appear, can give useful information on the composition and properties of an analyte. Currently, only gain and frequency measurements are performed using phononic crystal sensors. Other measurements like the transient response have been implemented in resonant sensors such as quartz microbalances showing great results and proving to be a great complimentary measure to the gain and frequency measurements. In the present paper, a study of the feasibility of using the transient response as a measure to acquire additional information about the analyte is presented. Theoretical studies using the transmission line model were realized to show the impact of variations in the concentration of an analyte, in this case, lithium carbonate solutions, in the transient time of the system. Experimental realizations were also performed showing that the proposed measurement scheme presents significant changes in the resulting data, indicating the potential use of this measure in phononic crystal sensors. This proposed measure could be implemented as a stand-alone measure or as a compliment to current sensing modalities.
声子晶体是具有特定共振特征的周期性复合结构,作为液体传感器在该领域越来越受欢迎。在周期性规则排列中引入结构缺陷,可以在声子晶体的特征带隙内产生共振模式,也称为缺陷模式。这些缺陷模式的形态以及出现的频率,可以为分析物的成分和性质提供有用的信息。目前,仅使用声子晶体传感器进行增益和频率测量。其他测量,如瞬态响应,已经在谐振传感器中实现,如石英微天平,取得了很好的结果,并被证明是对增益和频率测量的很好的补充测量。在本文中,研究了使用瞬态响应作为获取分析物附加信息的测量方法的可行性。使用传输线模型进行了理论研究,以显示系统瞬态时间中分析物浓度(在这种情况下为碳酸锂溶液)变化的影响。还进行了实验实现,表明所提出的测量方案在所得数据中呈现出显著变化,表明该测量方法在声子晶体传感器中的潜在应用。该测量方法可以作为独立的测量方法或作为对当前传感模态的补充。