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Acetone sensor based 1D defective phononic crystal as a highly sensitive biosensor application

机译:基于丙酮传感器的1D缺陷呼吸晶体作为高度敏感的生物传感器应用

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摘要

In the present work, a one-dimensional (1D) phononic crystal (PnC) was prepared as a biomarker for measuring acetone concentrations in water. As acetone is considered a very important substance for human health, it is also looked as a vital industrial material in medicine, fiber, and solvent industries. Thereby measuring the smallest changes in acetone concentration efficiently is the main target of this study. For this purpose, a binary multilayer 1D PnC sensor of the configuration ([lead/epoxy]~2acetone([lead/epoxy]~2) with a defect layer filled with acetone in-between is considered. Each acetone concentration induces a specific resonant peak (the maximum transmitted frequency inside the phononic band gap) which is related directly to acetone acoustic properties. Moreover, our results revealed that acetone acts as two substances with opposite properties depending on the direction of the resonant peak. Where, for concentrations up to the value of 9.1%, the resonant peak shifted towards the high frequency range. While for concentrations starting from the percentage of 10%, the resonant peak shifted towards the low frequency range. Finally, the sensor performance parameters such as sensitivity (S), quality factor (Q), and figure of merit (FOM) were calculated for the two concentration ranges. The sensor provided high sensitivity with a value of 4.29×10~7 Hz, quality factor of 20,732, resolution of 1,741,200 Hz, and FOM of 52.
机译:在本作工作中,制备一维(1D)声子晶体(PNC)作为用于测量水中丙酮浓度的生物标志物。由于丙酮被认为是人类健康的一个非常重要的物质,它也被视为医学,纤维和溶剂行业的重要产业材料。从而有效地测量丙酮浓度的最小变化是该研究的主要目标。为此目的,考虑了构造的二元多层1d PNC传感器([铅/环氧]〜2〜2),其中缺损层填充有丙酮在中间的丙酮层。每个丙酮浓度诱导特定的共振直接与丙酮声学性能相关的峰值(声子带隙中的最大透射频率)。此外,我们的结果表明,丙酮作为两种具有相反性质的物质,这取决于谐振峰的方向。在哪里,浓度达到浓度值为9.1%,谐振峰朝向高频范围。虽然对于从10%的百分比开始的浓度,谐振峰朝向低频范围移动。最后,传感器性能参数如灵敏度,为两个浓度范围计算质量因子(Q)和优异(FOM)的数字。传感器提供了高灵敏度,值为4.29×10〜7 Hz,质量因子20,732,resputio n为1,741,200 Hz,52的FOM。

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