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Influence of graphene's chemical potential on SPR biosensor using ZnO for DNA hybridization

机译:石墨烯化学势对使用ZnO进行DNA杂交的SPR生物传感器的影响

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This article presents an SPR biosensor (Structure: SF10 prism-Au-ZnO-Graphene-PBS solution) to sense DNA hybridization using angular interrogation method at an operating wavelength of 633 nm. Its performance parameters, i.e., sensitivity (S), detection accuracy (DA), and figure of merit (FoM) are evaluated for different values of graphene's chemical potential at room temperature. Sensitivity (141.9 degrees/RIU), DA (0.64 Degree(-1)) and FoM (9.14 RIU-1) are achieved for the proposed SPR biosensor at 0 eV chemical potential of graphene at the room temperature. The maximum sensitivity of 156.33 degrees/RIU is obtained for the proposed SPR biosensor at 1.25 eV graphene's chemical potential. The present article utilizes biocompatibility, chemical stability, and unique electrical and optical properties of both graphene and ZnO in SPR sensor for DNA hybridization.
机译:本文介绍了SPR生物传感器(结构:SF10棱镜-Au-ZnO-石墨烯-PBS溶液),以在633nm的工作波长下使用角度询问方法感测DNA杂交。 其性能参数,即灵敏度,检测精度(DA)和优异(FOM)的图标在室温下的不同价值评价不同的值。 敏感性(141.9度/ RIU),DA(0.64度(-1))和FOM(9.14 RIU-1),在室温下在0 EV化学电位时为所提出的SPR生物传感器实现。 在1.25 EV Graphene的化学潜力下,为提出的SPR生物传感器获得了156.33度/ RiU的最大灵敏度。 本文利用石墨烯和ZnO的生物相容性,化学稳定性和独特的电气和光学性质,用于DNA杂交。

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