Wehrmeister Jana, Fuss Achim, Saurenbach Frank, Berger Rüdiger, Helm Mark
Institut für Pharmazie und Molekulare Biotechnologie, Department of Chemistry, Ruprecht-Karls-Universität Heidelberg, Im Neuenheimer Feld 364, D-69120 Heidelberg, Germany.
Rev Sci Instrum. 2007 Oct;78(10):104105. doi: 10.1063/1.2785028.
The increasing use of micromechanical cantilevers in sensing applications causes a need for reliable readout techniques of micromechanical cantilever sensor (MCS) bending. Current optical beam deflection techniques suffer from drawbacks such as artifacts due to changes in the refraction index upon exchange of media. Here, an adaptation of the Fabry-Perot interferometer is presented that allows simultaneous determination of MCS bending and changes in the refraction index of media. Calibration of the instrument with liquids of known refraction index provides an avenue to direct measurement of bending with nanometer precision. Versatile construction of flow cells in combination with alignment features for substrate chips allows simultaneous measurement of two MCS situated either on the same, or on two different support chips. The performance of the instrument is demonstrate in several sensing applications, including adsorption experiments of alkanethioles on MCS gold surfaces, and measurement of humidity changes in air.
微机械悬臂在传感应用中的使用日益增加,这就需要可靠的微机械悬臂传感器(MCS)弯曲读出技术。当前的光束偏转技术存在一些缺点,例如由于介质交换时折射率变化而产生的伪像。在此,提出了一种法布里-珀罗干涉仪的改进形式,它能够同时测定MCS的弯曲以及介质折射率的变化。用已知折射率的液体对仪器进行校准,为以纳米精度直接测量弯曲提供了一条途径。流动池的通用构造与用于衬底芯片的对准特征相结合,允许同时测量位于同一支撑芯片或两个不同支撑芯片上的两个MCS。该仪器的性能在多个传感应用中得到了验证,包括烷硫醇在MCS金表面的吸附实验以及空气中湿度变化的测量。