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基于电光调制技术的纳米生物传感

Nanobiosensing Based on Electro-Optically Modulated Technology.

作者信息

Li Shuang, Qin Ziyue, Fu Jie, Gao Qiya

机构信息

Academy of Medical Engineering and Translational Medicine, Medical College, Tianjin University, Tianjin 300072, China.

出版信息

Nanomaterials (Basel). 2023 Aug 23;13(17):2400. doi: 10.3390/nano13172400.

Abstract

At the nanoscale, metals exhibit special electrochemical and optical properties, which play an important role in nanobiosensing. In particular, surface plasmon resonance (SPR) based on precious metal nanoparticles, as a kind of tag-free biosensor technology, has brought high sensitivity, high reliability, and convenient operation to sensor detection. By applying an electrochemical excitation signal to the nanoplasma device, modulating its surface electron density, and realizing electrochemical coupling SPR, it can effectively complete the joint transmission of electrical and optical signals, increase the resonance shift of the spectrum, and further improve the sensitivity of the designed biosensor. In addition, smartphones are playing an increasingly important role in portable mobile sensor detection systems. These systems typically connect sensing devices to smartphones to perceive different types of information, from optical signals to electrochemical signals, providing ideas for the portability and low-cost design of these sensing systems. Among them, electrochemiluminescence (ECL), as a special electrochemically coupled optical technology, has good application prospects in mobile sensing detection due to its strong anti-interference ability, which is not affected by background light. In this review, the SPR is introduced using nanoparticles, and its response process is analyzed theoretically. Then, the mechanism and sensing application of electrochemistry coupled with SPR and ECL are emphatically introduced. Finally, it extends to the relevant research on electrochemically coupled optical sensing on mobile detection platforms.

摘要

在纳米尺度下,金属展现出特殊的电化学和光学性质,这在纳米生物传感中发挥着重要作用。特别是基于贵金属纳米颗粒的表面等离子体共振(SPR),作为一种无标记生物传感器技术,为传感器检测带来了高灵敏度、高可靠性和操作便捷性。通过向纳米等离子体器件施加电化学激发信号,调制其表面电子密度,并实现电化学耦合SPR,可以有效地完成电信号和光信号的联合传输,增加光谱的共振位移,进而提高所设计生物传感器的灵敏度。此外,智能手机在便携式移动传感器检测系统中发挥着越来越重要的作用。这些系统通常将传感设备与智能手机相连,以感知从光信号到电化学信号等不同类型的信息,为这些传感系统的便携性和低成本设计提供了思路。其中,电化学发光(ECL)作为一种特殊的电化学耦合光学技术,因其抗干扰能力强且不受背景光影响,在移动传感检测中具有良好的应用前景。在这篇综述中,介绍了利用纳米颗粒的SPR,并对其响应过程进行了理论分析。然后,着重介绍了电化学与SPR和ECL耦合的机理及传感应用。最后,将其扩展到移动检测平台上电化学耦合光学传感的相关研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cde1/10489767/4c3f5cc58307/nanomaterials-13-02400-g001.jpg

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