纳米等离子体生物传感器:在纳米杯阵列上将电化学与局域表面等离子体共振光谱学相结合。

Nanoplasmonic biosensor: coupling electrochemistry to localized surface plasmon resonance spectroscopy on nanocup arrays.

机构信息

Biosensor National Special Laboratory, Key Laboratory for Biomedical Engineering of Education Ministry, Department of Biomedical Engineering, Zhejiang University, Hangzhou 310027, PR China.

Micro and Nanotechnology Lab, University of Illinois at Urbana-Champaign, IL 61801, USA.

出版信息

Biosens Bioelectron. 2015 May 15;67:237-42. doi: 10.1016/j.bios.2014.08.022. Epub 2014 Aug 19.

Abstract

The nanoscale Lycurgus cup arrays were hybrid structures of nanocups and nanoparticles with ultrasensitivity to refractive index change. In this study, an electrochemical localized surface plasmon resonance (LSPR) sensor was developed by coupling electrochemistry to LSPR spectroscopy measurement on the nanoscale cup arrays (nanoCA). Based on the combination of electrochemistry and LSPR measurement, the electrochemical LSPR on nanoCA was observed with significant resonance wavelength shifts in electrochemical modulation. The synchronous implementation of cyclic voltammetry and optical transmission spectrum can be used to obtain multiply sensing information and investigate the enhancement for LSPR from electrochemical scanning. The electrochemical enhanced LSPR was utilized as biosensor to detect biomolecules. The electrochemical LSPR biosensor with synchronous electrochemical and optical implement showed higher sensitivity than that of conventional optical LSPR measurement. Detecting with multi-transducer parameters and high sensitivity, the electrochemical LSPR provided a promising approach for chemical and biological detection.

摘要

纳米级林克杯阵列是纳米杯和纳米粒子的混合结构,对折射率变化具有超灵敏性。本研究通过将电化学与纳米杯阵列(nanoCA)上的局域表面等离子体共振(LSPR)光谱测量相结合,开发了一种电化学局域表面等离子体共振(LSPR)传感器。基于电化学和 LSPR 测量的结合,可以在电化学调制下观察到纳米 CA 上的电化学 LSPR,其共振波长发生显著位移。循环伏安法和光传输谱的同步实现可用于获得多重传感信息,并研究电化学扫描对 LSPR 的增强作用。电化学增强的 LSPR 被用作生物传感器来检测生物分子。具有同步电化学和光学实现的电化学 LSPR 生物传感器比传统的光学 LSPR 测量具有更高的灵敏度。电化学 LSPR 提供了一种有前途的化学和生物检测方法,具有多换能器参数和高灵敏度。

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