▎ 摘 要
The present study proposes five layered surface plasmon resonance based optical biosensors designed for he-moglobin measurement in human blood samples. Silver metal, zinc oxide nanowires (ZnO NWs), graphene nanolayers, and a BK7 prism have been used to design the suggested SPR sensor. The analysis was performed after modeling it using ZnO nanowire and graphene layers over the conventional sensor design. This optimized nanostructure uses the difference in refractive index to identify hemoglobin content in human blood. Vapor-liquid-solid (VLS) fabrication was used to create the ZnO NWs. The maximum sensitivity of the suggested configuration is 207 degrees /RIU, and other parameters FWHM of 5.937 degrees, the signal-to-noise ratio of 0.168 degrees -1, and a quality factor of 34.78 RIU-1 have been obtained. The suggested sensor may be used to detect and analyze biomolecules.