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The development of a wireless Love wave biosensor on 41 degrees YX LiNbO3

机译:41度YX LiNbO3上的无线Love波生物传感器的开发

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This paper presents a novel wireless Love-wave-based biosensor using a polymethyl methacrylate (PMMA) waveguide and protein A receptor layers on a 41 degrees YX LiNbO3 piezoelectric substrate for immunoglobulin G (IgG) detection. A 440 MHz reflective delay line composed of single-phase unidirectional transducers (SPUDTs) and three shorted grating reflectors was fabricated as the sensor element. A theoretical modeling was performed to describe the wave propagation of Love wave devices on a 41 degrees YX LiNbO3 piezoelectric substrate with large piezoelectricity. The fabricated devices were wirelessly characterized by using the network analyzer as the reader unit. The resultant reflection peaks showed large signaloise ratio, sharp peaks, and few spurious signals. The binding of the IgG to the protein A receptor layer induced large phase shifts of the reflection peaks due to the mass loading effect. Good linearity, reproducibility, and high sensitivity were observed in the IgG concentration range 1-65 nM. Unique advantages such as high sensitivity and a simple wireless measurement method over other currently available biosensors are also presented.
机译:本文提出了一种新型的基于无线Love波的生物传感器,该传感器在41度YX LiNbO3压电基板上使用聚甲基丙烯酸甲酯(PMMA)波导和A蛋白受体层进行免疫球蛋白G(IgG)检测。一条由单相单向换能器(SPUDT)和三个短路光栅反射器组成的440 MHz反射延迟线被制成传感器元件。进行了理论建模,以描述Love波器件在具有大压电性的41度YX LiNbO3压电基板上的波传播。通过使用网络分析仪作为读取器单元对制造的设备进行无线表征。所得的反射峰显示出大的信噪比,尖锐的峰以及很少的杂散信号。 IgG与蛋白A受体层的结合由于质量加载效应而引起反射峰的大相移。在IgG浓度范围为1-65 nM时,观察到良好的线性,可重复性和高灵敏度。还提出了与其他当前可用的生物传感器相比诸如高灵敏度和简单的无线测量方法的独特优势。

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