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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >Multichannel quartz crystal microbalance array: Fabrication, evaluation, application in biomarker detection
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Multichannel quartz crystal microbalance array: Fabrication, evaluation, application in biomarker detection

机译:多通道石英晶体微天平阵列:制备,评估,在生物标志物检测中的应用

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A multichannel quartz crystal microbalance array (MQCM) with three pairs of gold electrodes was fabricated for detection of two biomarkers: acetone and nitric oxide (NO). The gold electrodes were deposited symmetrically on an AT-cut 10 MHz circular quartz plate using photolithography, sputtering, and lift-off technologies. The effect of gold layer thickness on MQCM performance was investigated and the optimized thickness was 101 nm. The simulation values of the electric parameters C-0, C-q, L-q, and R-q in the Butterworth-Van Dike equivalent circuit for the MQCM device were 97 pF, 1.3 pF, 1.05 mH, and 9.8 0, respectively. Simulation values were in the theoretical range, which indicated that the fabricated MQCM device had good resonance performance. Two types of nanocomposites, titanium dioxide multiwalled carbon nanotubes and cobalt (II)phthalocyanine silica, were synthesized as sensing materials. The sensing mechanism is based on coordination adsorption of target molecules onto the sensing material, resulting in a resonant frequency shift of modified QCM sensor. A linear range from 4.33 to 129.75 ppmv for acetone was obtained and one from 5.75 to 103.45 ppbv for NO. (C) 2015 Elsevier Inc. All rights reserved.
机译:制作了具有三对金电极的多通道石英晶体微天平阵列(MQCM),用于检测两种生物标记:丙酮和一氧化氮(NO)。使用光刻,溅射和剥离技术将金电极对称地沉积在AT切割的10 MHz圆形石英板上。研究了金层厚度对MQCM性能的影响,最优化厚度为101 nm。 MQCM设备的Butterworth-Van Dike等效电路中电参数C-0,C-q,L-q和R-q的仿真值分别为97 pF,1.3 pF,1.05 mH和9.8 0。仿真值在理论范围内,表明所制造的MQCM器件具有良好的谐振性能。合成了两种类型的纳米复合材料,即二氧化钛多壁碳纳米管和钴(II)酞菁二氧化硅作为传感材料。传感机制基于目标分子在传感材料上的配位吸附,从而导致改进的QCM传感器产生共振频率偏移。丙酮的线性范围为4.33至129.75 ppmv,NO的线性范围为5.75至103.45 ppbv。 (C)2015 Elsevier Inc.保留所有权利。

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