Verification of Quartz Crystal Microbalance Array Using Vector Network Analyzer and OpenQCM
نویسندگان
چکیده
Received Jan 13, 2018 Revised Mar 15, 2018 Accepted Mar 30, 2018 Quartz Crystal Microbalance (QCM) is a device that allows non-destructive measurements of r in situ reaction activities. In this article, an array comprising of six 3MHz QCM sensors in an array were characterized using a vector network analyzer and OpenQCM, a portable measuring instrument that measures change in resonance frequency. Measurements of S21 transmission characteristics using the vector network analyzer provides the resonance frequency and can also be used to derive the RLC equivalent electrical circuit values of a resonant two-port network based on the Butterworth-Van Dyke model. In this work, Rm, Lm, Cm and Co were obtained via curve-fitting of the measurement results to the simulated results. Measurements were done in triplicates to verify reproducibility for all 6 sensors. For comparison, measurements were also done using a portable, open-source instrument, OpenQCM. The OpenQCM instrument directly measures changes in resonance frequencies, making it ideal for biosensing experiments, which correlate changes in mass with changes in resonance frequencies. Comparison between resonance frequency measurements using VNA and OpenQCM exhibit low percentage difference 0.2%. This QCM sensor array has the potential of conducting real-time, point-of-care analyses for detection of biological molecules.
منابع مشابه
Author Guidelines for 8
In this contribution, we present novel multiplexed frequency spectrum analyzer instrumentation to extract operational parameters and completely characterize the frequency response of an array of quartz crystal microbalance sensors. The effectiveness of the proposed instrumentation is proven by experimental measurements over a range of frequencies.
متن کاملThe Application of Neural Network of Multi-channel Quartz Crystal Microbalance for Fragrance Recognition
Detection of fragrances or odorous compounds that can readily evaporate at room temperature, has gained considerable attention. A multi-channel quartz crystal microbalance sensor coated with different sensing materials was employed in the present study to detect the odorous compounds. Principle Component Analysis method was used to visualize the classification of each fragrance in two-dimension...
متن کاملNAPPA-Based Nanobiosensors for the Detection of Proteins and of Protein- Protein Interactions Relevant to Cancer
In this manuscript, we report some proofs-of-principle and preliminary applications and results regarding the analytical quantification of protein expression of some genes biologically and clinically related to cancer. Experiments have been carried out coupling Nucleic Acid Programmable Protein Array (NAPPA) with a recently improved nanogravimetric apparatus which exploits the quartz crystal mi...
متن کاملBroadband 120 MHz Impedance Quartz Crystal Microbalance (QCM) with Calibrated Resistance and Quantitative Dissipation for Biosensing Measurements at Higher Harmonic Frequencies
We developed an impedance quartz crystal microbalance (QCM) approach with the ability to simultaneously record mass changes and calibrated energy dissipation with high sensitivity using an impedance analyzer. This impedance QCM measures frequency shifts and resistance changes of sensing quartz crystals very stable, accurately, and calibrated, thus yielding quantitative information on mass chang...
متن کاملArti®cial Intelligence Methods for Selection of an Optimized Sensor Array for Identi®cation of Volatile Organic Compounds
We have investigated two arti®cial intelligence (AI)-based approaches for the optimum selection of a sensor array for the identi®cation of volatile organic compounds (VOCs). The array consists of quartz crystal microbalances (QCMs), each coated with a different polymeric material. The ®rst approach uses a decision tree classi®cation algorithm to determine the minimum number of features that are...
متن کامل