表面等离子共振
等离子体子
光电子学
表面等离子体子
光电二极管
材料科学
镜面反射
局域表面等离子体子
雷
生物传感器
光学
法布里-珀罗干涉仪
纳米技术
物理
纳米颗粒
波长
作者
Giles Allison,Amrita Kumar Sana,Yuta Ogawa,Hidemi Kato,Kosei Ueno,Hiroaki Misawa,Koki Hayashi,Hisao Suzuki
标识
DOI:10.1038/s41467-021-26652-7
摘要
Surface plasmon resonance is a well-established technology for real-time highly sensitive label-free detection and measurement of binding kinetics between biological samples. A common drawback, however, of surface plasmon resonance detection is the necessity for far field angular resolved measurement of specular reflection, which increases the size as well as requiring precise calibration of the optical apparatus. Here we present an alternative optoelectronic approach in which the plasmonic sensor is integrated within a photovoltaic cell. Incident light generates an electronic signal that is sensitive to the refractive index of a solution via interaction with the plasmon. The photogenerated current is enhanced due to the coupling of the plasmon mode with Fabry-Pérot modes in the absorbing layer of the photovoltaic cell. The near field electrical detection of surface plasmon resonance we demonstrate will enable a next generation of cheap, compact and high throughput biosensors.
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