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Multiband and Ultrahigh Figure-of-Merit Nanoplasmonic Sensing with Direct Electrica Readout in Au-Si Nanojunctions

机译:Au-Si Nanojunctions直接电气读出的多频段和超高型纳米升性感应

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摘要

Nanoplasmonic sensors are heralding exciting advances as clinical diagnostics as they facilitate label-free, real-time, and ultrasensitive monitoring in a small footprint. But in essence, almost all of them still largely rely on expensive and bulky spectroscopy/imaging instrumentation and methodology, which has become the major impediment for point-of-care (POC) testing implantation. In this context, an ultracompact optical sensor is achieved with direct electrical read-out capacity by combining plasmonic sensing resonance and optical-signal-transducing into a unity integrated device. Benefiting from the convergence of high figure-of-merit (similar to 190) resonance and hot electron enhanced photoelectric conversions on the near-flat Au-Si nanotrench framework, the device is demonstrated to yield a detection limit on the order of 10(-6) RIU in a broadband operating wavelength window (700-1700 nm). Such a compact, silicon process compatible, and ultrasensitive optoelectronic sensing platform holds great potentials for future clinical POC detection and on-chip microspectrometer applications.
机译:纳米升性传感器是升高的兴奋进步,因为它们促进无标签,实时和超声监测的临床诊断。但实质上,几乎所有所有人都在很大程度上依赖于昂贵和庞大的光谱/成像仪表和方法,这已成为护理点(PoC)测试植入的主要障碍。在这种情况下,通过将等离子体传感谐振和光信号转换成团结集成装置来实现通过直接电读出容量来实现超自然光学传感器。受益于高附图(类似于190)的谐振和热电子增强的光电转换,对近扁平的Au-Si纳米框架框架进行了贡献,证明了该装置的10( - 6)RIU在宽带工作波长窗口(700-1700nm)中。这种紧凑型硅工艺兼容,超敏光电传感平台具有巨大的临床PoC检测和片上微分光计应用的潜力。

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