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Gravimetric sensors operating at 1.1 GHz based on inclined c-axis ZnO grown on textured Al electrodes

机译:重力传感器基于在纹理化的Al电极上生长的倾斜c轴ZnO在1.1 GHz下运行

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摘要

Shear mode solidly mounted resonators (SMRs) are fabricated using an inclined c-axis ZnO grown on a rough Al electrode. The roughness of the Al surface is controlled by changing the substrate temperature during the deposition process to promote the growth of inclined ZnO microcrystals. The optimum substrate temperature to obtain homogeneously inclined c-axis grains in ZnO films is achieved by depositing Al at 100 °C with a surface roughness ~9.2 nm, which caused an inclination angle of ~25° of the ZnO c-axis with respect to the surface normal. Shear mode devices with quality-factors at resonance, Q r and effective electromechanical coupling factors, keff2, as high as 180 and 3.4% are respectively measured. Mass sensitivities, S m of (4.9 ± 0.1) kHz · cm2g and temperature coefficient of frequency (TCF) of ~−67 ppm/K are obtained using this shear mode. The performance of the devices as viscosity sensors and biosensors is demonstrated by determining the frequency shifts of water-ethanol mixtures and detection of Rabbit immunoglobin G (IgG) whole molecule (H&L) respectively.
机译:使用在粗糙的Al电极上生长的倾斜c轴ZnO来制造剪切模式固体安装谐振器(SMR)。通过在沉积过程中改变衬底温度来控制Al表面的粗糙度,以促进倾斜的ZnO微晶的生长。通过在100 C下淀积表面粗糙度约为9.2 nm的Al来获得在ZnO薄膜中获得均匀倾斜的c轴晶粒的最佳衬底温度,这导致ZnO c轴相对于25°的倾斜角表面法线。具有共振质量因数,Q r和有效机电耦合因数的剪切模式设备, k eff 2 分别高达180%和3.4%。使用该剪切模式,可获得质量灵敏度,S m为(4.9±0.1)kHz·cm 2 / ng,频率温度系数(TCF)为〜-67 ppm / K。通过确定水-乙醇混合物的频移并分别检测兔免疫球蛋白G(IgG)全分子(H&L),证明了该设备作为粘度传感器和生物传感器的性能。

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