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Sensitivity enhancement of a surface plasmon resonance biosensor based on adding Pb_5Ge_3O_(11) layer to diagnose the hypothyroidism

机译:基于Pb_5Ge_3O_(11)层的甲状腺功能减退症诊断的表面等离振子共振生物传感器的敏感性增强

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Recently, the biological sensors based on surface plasmon resonance (SPR) have been highly investigated due to their versatile application in the field of medicine and pharmacy. In this study, we introduce a Kretschmann based sensor including a BK7 prism, gold, Pb5Ge3011 (PGO) and graphene layers. The special optical properties of the ferroelectric PGO layer plays a key role on improving the sensor performance. Initially the sensing sample is considered to be water where the sensor is sensitive to the refractive index changes of the sensing medium, An=0.005 (RIU), connected to outer layer. The structure sensitivity and the figure of merit (FOM) obtained as 228.22 (Deg/RIU) and 22.36 (1/RIU) at the wavelength of 632.8nm, respectively, which are higher than conventional structures properties. The main goal of the introduced sensor is to detect hypothyroidism caused by deficiency of thyroid hormones that is directly related to lack of hemoglobin level in the human body. According to the relationship between hemoglobin concentration and refractive index of blood, the sensor can be used to diagnostic tool. Also, by replacing blood profile of healthy people and patients into sensor structure some characteristics such as FWHM and reflectivity is obtained. Eventually, any impairment in refractive index of blood due to disease is recognizable with this group of sensors. For example, the achieved FWHM and reflectivity are 10.4308 (Deg) and 0.4739 (a.u) for healthy people and 10.3862 (Deg) and 0.4482 (a.u) for patients, respectively.
机译:近年来,基于表面等离子体共振(SPR)的生物传感器由于在医学和药学领域的广泛应用而受到了高度研究。在这项研究中,我们介绍了一种基于Kretschmann的传感器,包括BK7棱镜,金,Pb5Ge3011(PGO)和石墨烯层。铁电PGO层的特殊光学性能在改善传感器性能方面起着关键作用。最初,传感样品被认为是水,其中传感器对连接到外层的传感介质的折射率变化An = 0.005(RIU)敏感。在632.8nm波长处的结构灵敏度和品质因数(FOM)分别为228.22(Deg / RIU)和22.36(1 / RIU),高于常规结构性能。引入的传感器的主要目标是检测由甲状腺激素缺乏引起的甲状腺功能减退,甲状腺激素缺乏与人体血红蛋白水平的缺乏直接相关。根据血红蛋白浓度与血液折射率之间的关系,该传感器可用于诊断工具。而且,通过将健康人和患者的血液轮廓替换为传感器结构,可以获得一些特征,例如FWHM和反射率。最终,通过该组传感器可以识别出由于疾病引起的血液折射率的任何损害。例如,对于健康人,获得的FWHM和反射率分别为10.4308(Deg)和0.4739(a.u),对于患者,则分别为10.3862(Deg)和0.4482(a.u)。

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